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	<title>Новости &#8211; ВОПРОСЫ ЛЕСНОЙ НАУКИ/FOREST SCIENCE ISSUES</title>
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		<title>No 1, 2023</title>
		<link>https://jfsi.ru/en/1-2023/</link>
		
		<dc:creator><![CDATA[lena]]></dc:creator>
		<pubDate>Thu, 06 Jul 2023 07:51:16 +0000</pubDate>
				<category><![CDATA[Архив]]></category>
		<category><![CDATA[Новости]]></category>
		<guid isPermaLink="false">https://jfsi.ru/?p=5736</guid>

					<description><![CDATA[Review articles N. V.  Gopp,  J. L. Meshalkina,  A. N. Narykova, A. S. Plotnikova, O. V. Chernova MAPPING OF SOIL ORGANIC CARBON CONTENT AND STOCK AT THE REGIONAL AND LOCAL LEVELS: THE ANALYSIS OF MODERN METHODOLOGICAL&#46;&#46;&#46;]]></description>
										<content:encoded><![CDATA[<div id="attachment_5738" style="width: 216px" class="wp-caption aligncenter"><img aria-describedby="caption-attachment-5738" loading="lazy" class="size-medium wp-image-5738" src="https://jfsi.ru/wp-content/uploads/2023/07/Снимок-экрана-2023-07-06-в-10.42.50-206x300.png" alt="" width="206" height="300" srcset="https://jfsi.ru/wp-content/uploads/2023/07/Снимок-экрана-2023-07-06-в-10.42.50-206x300.png 206w, https://jfsi.ru/wp-content/uploads/2023/07/Снимок-экрана-2023-07-06-в-10.42.50-703x1024.png 703w, https://jfsi.ru/wp-content/uploads/2023/07/Снимок-экрана-2023-07-06-в-10.42.50-103x150.png 103w, https://jfsi.ru/wp-content/uploads/2023/07/Снимок-экрана-2023-07-06-в-10.42.50.png 714w" sizes="(max-width: 206px) 100vw, 206px" /><p id="caption-attachment-5738" class="wp-caption-text"><span style="color: #000000;"><strong>No 1 2023</strong></span></p></div>
<p style="font-weight: 400;"><span style="font-family: 'times new roman', times, serif; color: #000000;"><span style="font-weight: 600; font-size: 18pt;"><span style="font-style: inherit; font-weight: inherit;">Review articles</span></span><strong><br />
</strong></span></p>
<h2><strong><span style="font-family: 'times new roman', times, serif; font-size: 12pt; color: #000000;">N. V.  Gopp,  J. L. Meshalkina,  A. N. Narykova, A. S. Plotnikova, O. V. Chernova</span></strong></h2>
<p style="font-weight: 400;"><a href="https://jfsi.ru/en/6-1-2023-gopp_et_al/"><strong><span style="font-family: 'times new roman', times, serif;">MAPPING OF SOIL ORGANIC CARBON CONTENT AND STOCK AT THE REGIONAL AND LOCAL LEVELS: THE ANALYSIS OF MODERN METHODOLOGICAL APPROACHES</span></strong></a></p>
<p><strong><span style="color: #000000;"><span style="font-family: 'times new roman', times, serif;">A. S. Podolskaia</span></span></strong></p>
<p style="font-weight: 400;"><a href="https://jfsi.ru/en/6-1-2023-podolskaya/"><strong><span style="font-family: 'times new roman', times, serif;">REMOTE SENSING DATA FROM SPACE FOR ROAD IMAGE RECOGNITION IN THE FORESTRY</span></strong></a></p>
<p style="font-weight: 400;"><strong><span style="font-family: 'times new roman', times, serif; font-size: 18pt; color: #000000;"><span style="font-style: inherit;">Original research</span></span></strong></p>
<p><strong><span style="color: #000000;"><span style="font-family: 'times new roman', times, serif;">V.  A. Khamedov, N. V. Davydova</span></span></strong></p>
<p style="font-weight: 400;"><strong><span style="color: #000000;"><a style="color: #000000;" href="https://jfsi.ru/en/6-1-2023-khamedov_davydova/"><span style="font-family: 'times new roman', times, serif;"><span style="color: #008000;">ASSESSMENT OF PROBABLE GAS CHEMICAL POLLUTION OF PROMISING FOREST PROTECTED AREAS BY APG BURNING EMISSIONS</span></span></a></span></strong></p>
<p><strong><span style="color: #000000;"><span style="font-family: 'times new roman', times, serif;">D. V. Ershov, E. N. Sochilova</span></span></strong></p>
<p style="font-weight: 400;"><a href="https://jfsi.ru/en/5-2-2022-ershov_sochilova-2/"><strong><span style="font-family: 'times new roman', times, serif;">QUANTITATIVE ESTIMATES OF DIRECT PYROGENIC CARBON EMISSIONS IN FORESTS OF RUSSIA ACCORDING TO REMOTE MONITORING DATA 2021</span></strong></a></p>
<p><strong><span style="font-style: inherit; font-family: 'times new roman', times, serif; color: #000000; font-size: 18pt;"><span style="font-style: inherit;">Short science articles</span></span></strong></p>
<p><strong><span style="color: #000000;"><span style="font-family: 'times new roman', times, serif;">A. E. Kvashnina, F.  K. Vozmitel, V.  A. Khamedov</span></span></strong></p>
<p><strong><span style="font-family: 'times new roman', times, serif; font-size: 12pt;"><a href="https://jfsi.ru/en/%d0%b4%d0%b8%d0%bd%d0%b0%d0%bc%d0%b8%d0%ba%d0%b0-%d0%b3%d0%b8%d0%b1%d0%b5%d0%bb%d0%b8-%d0%bb%d0%b5%d1%81%d0%bd%d0%be%d0%b9-%d1%80%d0%b0%d1%81%d1%82%d0%b8%d1%82%d0%b5%d0%bb%d1%8c%d0%bd%d0%be%d1%81/">DYNAMICS OF FOREST VEGETATION DESTRUCTION IN THE AREA ADJACENT THE COPPER MINE IN THE SVERDLOVSK REGION</a></span></strong></p>
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		<title>No 4, 2022</title>
		<link>https://jfsi.ru/en/4-2022/</link>
		
		<dc:creator><![CDATA[lena]]></dc:creator>
		<pubDate>Fri, 07 Apr 2023 06:50:22 +0000</pubDate>
				<category><![CDATA[Архив]]></category>
		<category><![CDATA[Новости]]></category>
		<guid isPermaLink="false">https://jfsi.ru/?p=5643</guid>

					<description><![CDATA[Review articles E. S. Podolskaia USE OF REMOTE SENSING DATA FROM SPACE FOR ROAD IMAGE RECOGNITION IN THE FORESTRY D. N.  Teben’kova, D. V. Gichan, Yu. N. Gagarin IMPACT OF FORESTRY ACTIVITIES ON SOIL CARBON:&#46;&#46;&#46;]]></description>
										<content:encoded><![CDATA[<div id="attachment_5648" style="width: 224px" class="wp-caption aligncenter"><img aria-describedby="caption-attachment-5648" loading="lazy" class="size-medium wp-image-5648" src="https://jfsi.ru/wp-content/uploads/2023/04/Снимок-экрана-2023-04-07-в-09.43.24-214x300.png" alt="Vol 5, No 4, 2022" width="214" height="300" srcset="https://jfsi.ru/wp-content/uploads/2023/04/Снимок-экрана-2023-04-07-в-09.43.24-214x300.png 214w, https://jfsi.ru/wp-content/uploads/2023/04/Снимок-экрана-2023-04-07-в-09.43.24-107x150.png 107w, https://jfsi.ru/wp-content/uploads/2023/04/Снимок-экрана-2023-04-07-в-09.43.24.png 584w" sizes="(max-width: 214px) 100vw, 214px" /><p id="caption-attachment-5648" class="wp-caption-text"><span style="font-family: 'times new roman', times, serif;"><strong>Vol 5, No 4, 2022</strong></span></p></div>
<p><span style="font-family: 'times new roman', times, serif; color: #000000; font-size: 18pt;"><span style="font-weight: 600;"><span style="font-style: inherit; font-weight: inherit;">Review articles</span></span></span></p>
<p><strong style="color: #000000; font-family: 'times new roman', times, serif; font-size: 16px;">E. S. Podolskaia</strong><br />
<b></b><a href="https://jfsi.ru/en/5-4-2022-podolskaia/"><strong><b><span style="font-family: 'times new roman', times, serif; color: #000000;"><span style="color: #008000;">USE OF REMOTE SENSING DATA FROM SPACE FOR ROAD IMAGE RECOGNITION IN THE FORESTRY</span></span></b></strong></a></p>
<p><strong style="color: #000000; font-family: 'times new roman', times, serif; font-size: 16px;">D. N.  Teben’kova, D. V. Gichan, Yu. N. Gagarin</strong><br />
<b></b><a href="https://jfsi.ru/en/5-4-2022-tebenkova_et_al/"><strong><b><span style="font-family: 'times new roman', times, serif; color: #000000;"><span style="color: #008000;">IMPACT OF FORESTRY ACTIVITIES ON SOIL CARBON: A REVIEW</span></span></b></strong></a></p>
<p><span style="font-weight: 600; font-family: 'times new roman', times, serif; color: #000000; font-size: 18pt;"><span style="font-style: inherit; font-weight: inherit;">Original research</span></span></p>
<p><strong style="color: #000000; font-family: 'times new roman', times, serif; font-size: 16px;"><span style="color: #000000; font-family: 'times new roman', times, serif;"><strong><b><span style="font-family: 'times new roman', times, serif;"><span lang="ru"><span lang="EN-GB">M. S. Savin</span><span lang="EN-GB">, A. S. Plotnikova</span><span lang="EN-GB">, A. N. Narykova</span></span></span></b></strong></span><br />
<b></b><a href="https://jfsi.ru/en/5-4-2022-savin_et_al/"><strong><b>APPLICATION OF GIS TECHNOLOGIES TO BUILD SPATIAL PREDICTORS FOR MAPPING FOREST ECOSYSTEM FUNCTIONS AT THE LOCAL LEVEL</b></strong></a></strong></p>
<p><strong style="color: #000000; font-family: 'times new roman', times, serif; font-size: 16px;"><span style="color: #000000; font-family: 'times new roman', times, serif;"><strong><b><span style="font-family: 'times new roman', times, serif;"><span lang="ru"><span lang="EN-GB">D. V. Ershov, E. N. Sochilova</span></span></span></b></strong></span><br />
<b></b><a href="https://jfsi.ru/en/5-2-2022-ershov_sochilova/"><strong><b>QUANTITATIVE ESTIMATES OF DIRECT PYROGENIC CARBON EMISSIONS IN FORESTS OF RUSSIA ACCORDING TO REMOTE MONITORING DATA 2021</b></strong></a></strong></p>
<div><span style="font-size: 18pt; font-family: 'times new roman', times, serif; color: #000000;"><b>Anniversaries</b></span></div>
<div>
<div><span style="font-family: 'times new roman', times, serif;"><strong><span style="color: #000000;">O. I. Evstigneev, V. N. Korotkov</span></strong><span style="font-size: large;"><b><br />
</b></span></span></div>
<div><a href="https://jfsi.ru/professor-olga-v-smirnovas-system-of-views-in-forest-ecosystem-ecology/"><strong><span style="font-family: 'times new roman', times, serif;">PROFESSOR OLGA V. SMIRNOVA’S SYSTEM OF VIEWS IN FOREST ECOSYSTEM ECOLOGY  </span></strong></a></div>
</div>
<div></div>
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		<title>№3 2022</title>
		<link>https://jfsi.ru/en/3-2022/</link>
		
		<dc:creator><![CDATA[lena]]></dc:creator>
		<pubDate>Mon, 28 Nov 2022 07:29:34 +0000</pubDate>
				<category><![CDATA[Новости]]></category>
		<guid isPermaLink="false">https://jfsi.ru/?p=5226</guid>

					<description><![CDATA[Review articles A. N. Narykova, A. S. Plotnikova MAPPING OF ECOSYSTEM SERVICES AT THE LOCAL LEVEL: A REVIEW OF THE CURRENT STATE OF RESEARCH Original research V. G. Storozhenkо COMPARATIVE ASSESSMENT OF THE SUCCESSION DYNAMICS OF&#46;&#46;&#46;]]></description>
										<content:encoded><![CDATA[<div id="attachment_5228" style="width: 219px" class="wp-caption aligncenter"><img aria-describedby="caption-attachment-5228" loading="lazy" class="wp-image-5228 size-medium" src="https://jfsi.ru/wp-content/uploads/2022/11/Снимок-экрана-2022-11-28-в-10.21.00-209x300.png" alt="" width="209" height="300" srcset="https://jfsi.ru/wp-content/uploads/2022/11/Снимок-экрана-2022-11-28-в-10.21.00-209x300.png 209w, https://jfsi.ru/wp-content/uploads/2022/11/Снимок-экрана-2022-11-28-в-10.21.00-104x150.png 104w, https://jfsi.ru/wp-content/uploads/2022/11/Снимок-экрана-2022-11-28-в-10.21.00.png 696w" sizes="(max-width: 209px) 100vw, 209px" /><p id="caption-attachment-5228" class="wp-caption-text"><strong><span style="font-family: 'times new roman', times, serif; color: #000000;">Vol 5, No 3, 2022</span></strong></p></div>
<p><span style="font-family: 'times new roman', times, serif; color: #000000; font-size: 18pt;"><span style="font-weight: 600;"><span style="font-style: inherit; font-weight: inherit;">Review articles</span></span></span></p>
<p><strong style="color: #000000; font-family: 'times new roman', times, serif; font-size: 16px;">A. N. Narykova, A. S. Plotnikova</strong><br />
<b></b><strong><b><a href="https://jfsi.ru/en/5-3-2022-narykovaplotnikova/"><span style="font-family: 'times new roman', times, serif; color: #000000;"><span style="color: #008000;">MAPPING OF ECOSYSTEM SERVICES AT THE LOCAL LEVEL: </span><span style="color: #008000;">A REVIEW OF THE CURRENT STATE OF RESEARCH</span></span></a></b></strong></p>
<p><span style="font-weight: 600; font-family: 'times new roman', times, serif; color: #000000; font-size: 18pt;"><span style="font-style: inherit; font-weight: inherit;">Original research</span></span></p>
<p><strong style="color: #000000; font-family: 'times new roman', times, serif; font-size: 16px;"><span style="color: #000000; font-family: 'times new roman', times, serif;"><strong><b><span style="font-family: 'times new roman', times, serif;"><span lang="ru">V. G. Storozhenkо</span></span></b></strong></span><br />
<b></b><strong><b><a style="color: #008000;" href="https://jfsi.ru/en/5-3-2022-storozhenko/">COMPARATIVE ASSESSMENT OF THE SUCCESSION DYNAMICS OF WOOD FRACTIONS OF SPRUCE FORESTS OF THE SOUTHERN TAIGA</a></b></strong></strong></p>
<p><span style="color: #000000; font-family: 'times new roman', times, serif;"><strong><b><span style="font-family: 'times new roman', times, serif;"><span style="color: #000000;"><strong style="color: #000000; font-family: 'times new roman', times, serif;">E. E. Muchnik</strong></span></span></b></strong></span><br />
<b></b><span style="font-family: 'times new roman', times, serif;"><strong><b><a href="https://jfsi.ru/en/5-3-2022-muchnik/"><span style="color: #008000;">SOME RESULTS OF LICHENOLOGICAL STUDIES </span><span style="color: #008000;">IN THE LOSINY OSTROV NATIONAL PARK (MOSCOW AND MOSCOW REGION, RUSSIA)</span></a></b></strong></span></p>
<p><span style="font-family: 'times new roman', times, serif; color: #000000; font-size: 12pt;"><strong><span style="color: #000000; font-family: 'times new roman', times, serif;"><b><span style="font-family: 'times new roman', times, serif;">V. N. Shanin, P. V. Frolov, I. V. Priputina, O. G. Chertov, S. S. Bykhovets, E. V. Zubkova, A. M. Portnov, G. G. Frolova, M. N. Stamenov, P. Y. Grabarnik</span></b></span><br />
<b></b><b><a href="https://jfsi.ru/en/5-3-2022-shanin_et_al/"><span style="font-family: 'times new roman', times, serif; color: #008000;">MODELING THE DYNAMICS OF FOREST ECOSYSTEMS TAKING INTO ACCOUNT THEIR STRUCTURAL HETEROGENEITY AT DIFFERENT FUNCTIONAL AND SPATIAL LEVELS</span></a></b></strong></span></p>
<p><span style="font-family: 'times new roman', times, serif; color: #000000;"><strong><b><span lang="EN-US"><span style="font-family: 'times new roman', times, serif;">E. V. Basova, N. V. Lukina, A. I. Kuznecova, A. V. Gornov, N. E. Shevchenko, E. V. Tihonova, A. P. Geraskina, T. Yu.  Braslavskaya, D. N.Teben&#8217;kova, D. L. Lugovaya</span><br />
<a href="https://jfsi.ru/5-3-2022-basova_et_al/"><span style="font-family: 'times new roman', times, serif;"><span style="color: #008000;"><a style="color: #008000;" href="https://jfsi.ru/en/5-3-2022-basova_et_al/">QUALITY OF WOOD LITTER AS AN INFORMATIVE INDICATOR OF FUNCTIONAL CLASSIFICATION OF FORESTS</a></span></span></a></span></b></strong></span></p>
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		<title>2 2022</title>
		<link>https://jfsi.ru/en/2-2022/</link>
		
		<dc:creator><![CDATA[lena]]></dc:creator>
		<pubDate>Thu, 21 Jul 2022 09:13:43 +0000</pubDate>
				<category><![CDATA[Новости]]></category>
		<guid isPermaLink="false">https://jfsi.ru/?p=5094</guid>

					<description><![CDATA[Original Research D. N. Tebenkova, N. V. Lukina, A. D. Kataev, S. I. Chumachenko, V. V. Kiselyova, A. A. Kolycheva, V. N. Shanin, Yu. N. Gagarin, A. I. Kuznetsova  SCENARIO DEVELOPMENT FOR THE FORESTS&#46;&#46;&#46;]]></description>
										<content:encoded><![CDATA[<div id="attachment_5089" style="width: 218px" class="wp-caption aligncenter"><img aria-describedby="caption-attachment-5089" loading="lazy" class="size-medium wp-image-5089" src="https://jfsi.ru/wp-content/uploads/2022/07/Обложка-ВЛН-—-2022-2_eng-208x300.jpg" alt="" width="208" height="300" srcset="https://jfsi.ru/wp-content/uploads/2022/07/Обложка-ВЛН-—-2022-2_eng-208x300.jpg 208w, https://jfsi.ru/wp-content/uploads/2022/07/Обложка-ВЛН-—-2022-2_eng-104x150.jpg 104w, https://jfsi.ru/wp-content/uploads/2022/07/Обложка-ВЛН-—-2022-2_eng.jpg 692w" sizes="(max-width: 208px) 100vw, 208px" /><p id="caption-attachment-5089" class="wp-caption-text"><span style="font-family: 'times new roman', times, serif;"><strong>№1 2022</strong></span></p></div>
<p style="font-weight: 400;"><span style="color: #000000; font-size: 18pt; font-family: 'times new roman', times, serif;"><strong><span style="font-style: inherit;"><span style="font-style: inherit;">Original Research</span></span></strong></span></p>
<p><span style="color: #000000; font-family: 'times new roman', times, serif;"><strong><b><span style="font-family: 'times new roman', times, serif;">D. N. Tebenkova, N. V. Lukina, A. D. Kataev, S. I. Chumachenko, V. V. Kiselyova, A. A. Kolycheva, V. N. Shanin, Yu. N. Gagarin, A. I. Kuznetsova </span></b></strong></span><br />
<a href="https://jfsi.ru/en/5-2-2022-tebenkova-et-al/"><span style="font-family: 'times new roman', times, serif;"><strong><b><span lang="EN-US">SCENARIO DEVELOPMENT FOR THE FORESTS ECOSYSTEM SERVICES IMITATION MODELLING</span></b></strong></span></a></p>
<p><span style="color: #000000; font-family: 'times new roman', times, serif;"><strong><b><span style="font-family: 'times new roman', times, serif;"><span lang="EN-US">M. S. Savin, A. S. Plotnikova, A. N. Narykova</span></span></b></strong></span><br />
<a href="https://jfsi.ru/en/5-2-2022-savin_et_al/"><span style="font-family: 'times new roman', times, serif;"><strong><b><span lang="EN-US">APPLICATION OF GIS TECHNOLOGIES TO BUILD SPATIAL PREDICTORS FOR MAPPING FOREST ECOSYSTEM FUNCTIONS AT THE LOCAL LEVEL</span></b></strong></span></a></p>
<p><span style="color: #000000; font-family: 'times new roman', times, serif;"><strong><b><span style="font-family: 'times new roman', times, serif;"><span lang="EN-US">V. N. Shanin, P. V. Frolov, V. N. Korotkov</span></span></b></strong></span><br />
<a href="https://jfsi.ru/en/5-2-2022-shanin_et_al/"><span style="font-family: 'times new roman', times, serif;"><strong><b><span lang="EN-US">CAN ARTIFICIAL REFORESTATION ALWAYS BE A FOREST CLIMATIC PROJECT?</span></b></strong></span></a></p>
<p><span style="color: #000000; font-family: 'times new roman', times, serif;"><strong><b><span style="font-family: 'times new roman', times, serif;"><span lang="EN-US">A. V. Ignateva, N. V. Baranovskiy</span></span></b></strong></span><br />
<a href="https://jfsi.ru/en/5-2-2022-ignatevabaranovskiy/"><span style="font-family: 'times new roman', times, serif;"><strong><b><span lang="EN-US">DYNAMICS OF FOREST FIRES IN THE REPUBLIC OF BURYATIA</span></b></strong></span></a></p>
<p style="font-weight: 400;"><span style="color: #000000; font-size: 18pt; font-family: 'times new roman', times, serif;"><strong><span style="font-style: inherit;">Anniversaries</span></strong></span></p>
<p><span style="color: #000000; font-family: 'times new roman', times, serif;"><strong><b><span style="font-family: 'times new roman', times, serif;">А<span lang="EN-US">. V. Gornov, </span>А<span lang="EN-US">. P. Geraskina, D. V. Ershov, D. N. Tebenkova, N. </span>Е<span lang="EN-US">. Shevchenko</span></span></b></strong></span><br />
<a href="https://jfsi.ru/en/5-2-2022-gornov_at_all/"><span style="font-family: 'times new roman', times, serif;"><strong><b><span lang="EN-US">LEADERS OF FOREST SCIENCE: TO THE ANNIVERSARY OF CORRESPONDING MEMBER OF THE RAS NATALIA VASILEVNA LUKINA</span></b></strong></span></a></p>
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		<title>MATHEMATICAL MODELING OF THE FOREST FIRE IMPACT ON THE BRANCH OF A CONIFEROUS TREE</title>
		<link>https://jfsi.ru/en/5-1-2021-baranovskiy_menshikov/</link>
		
		<dc:creator><![CDATA[lena]]></dc:creator>
		<pubDate>Tue, 05 Apr 2022 08:44:01 +0000</pubDate>
				<category><![CDATA[Новости]]></category>
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					<description><![CDATA[Original Russian Text © 2021 N. V. Baranovskiy, D. S. Menshikov published in Forest Science Issues Vol. 4, No. 2, Article 85 N.V. Baranovskiy1, D. S. Menshikov2 1Tomsk Polytechnic University, Lenin Ave. 30, Tomsk 634050, Russian&#46;&#46;&#46;]]></description>
										<content:encoded><![CDATA[<p style="text-align: left;"><span style="color: #000000;"><a style="color: #000000;" href="https://jfsi.ru/wp-content/uploads/2022/05/5-1-2021-BaranovskiyMenshikov.pdf"><img loading="lazy" class="alignright wp-image-1122 size-full" src="https://jfsi.ru/wp-content/uploads/2018/10/pdf.png" alt="" width="32" height="32" /></a></span></p>
<p style="font-weight: 400; text-align: justify;"><span style="font-family: 'times new roman', times, serif; font-size: 10pt;">Original Russian Text © 2021 N. V. Baranovskiy, D. S. Menshikov<b><sup> </sup></b>published in Forest Science Issues Vol. 4, No. 2, <a href="https://jfsi.ru/4-3-2021-baranovskiy_menshikov/" target="_blank" rel="noopener noreferrer">Article 85</a></span></p>
<p style="font-weight: 400; text-align: center;"><span style="font-family: 'times new roman', times, serif; color: #000000;"><strong>N.V. Baranovskiy<sup>1</sup>, D. S. Menshikov<sup>2</sup></strong></span></p>
<p style="text-align: center;"><span style="font-family: 'times new roman', times, serif; color: #000000;"><em><sup>1</sup></em><em>Tomsk Polytechnic University,</em></span></p>
<p style="text-align: center;"><span style="font-family: 'times new roman', times, serif; color: #000000;"><em>Lenin Ave. 30, Tomsk 634050,</em><em> Russian Federation</em></span></p>
<p style="text-align: center;"><span style="font-family: 'times new roman', times, serif; color: #000000;"><em><sup>2</sup></em><em>State Specialized Design Institute</em></span></p>
<p style="text-align: center;"><span style="font-family: 'times new roman', times, serif; color: #000000;"><em>Bohdan Khmelnitsky st. 2, Novosibirsk 630075, </em><em>Russian Federation</em></span></p>
<p style="text-align: center;"><span style="font-family: 'times new roman', times, serif; color: #000000;">E-mail: firedanger@yandex.ru</span></p>
<p style="text-align: center;"><span style="font-family: 'times new roman', times, serif; color: #000000;">Received 17 February 2021</span></p>
<p style="text-align: center;"><span style="font-family: 'times new roman', times, serif; color: #000000;">Revised 14 June 2021</span></p>
<p style="text-align: center;"><span style="font-family: 'times new roman', times, serif; color: #000000;">Accepted 29 June 2021</span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;">It is necessary to develop quantitative methods to assess the formation of thermal burns in the morphological parts of coniferous trees. The purpose of the study is mathematical modeling of heat transfer in the layered structure of a coniferous tree branch under the influence of a forest fire front. The heat propagation in the «branch — needles — flame zone» system is described by a system of non-stationary differential equations of heat conduction with the corresponding initial and boundary conditions. As an object of research, a digital model of a branch of a coniferous tree for various species, namely, pine, larch and fir, was used. Temperature distributions are obtained for different variants of the branch structure and conditions of the impact of the forest fire front. Conclusions are made about the need for further modernization of the mathematical model. The developed model is the basis for creating software tools for specialized geographic information systems.</span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;"><strong><em>Keywords</em></strong><em>: forest fire, branch, heat transfer, impact, thermal injure</em></span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;"><em> </em></span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;">Forest fires are currently a real disaster for a number of countries in the world community, as forest fires have turned from a natural regulating factor into a catastrophic phenomenon. As a result of forest fires, the atmosphere is polluted, forest stands die, industrial timber stocks are destroyed, chronic diseases are exacerbated, and rural settlements are destroyed. One of the important problems is the death of individual trees or entire forest stands as a result of forest fires (Baranovskiy, Kuznetsov, 2017; Baranovskiy, 2020). Currently, research is being widely conducted within the framework of quantitative ecology, which studies the dynamics of individual ecological systems and includes mathematical models of individual ecological processes (Shilov, 2003). Existing methods for assessing the environmental consequences of forest fires are based mainly on the assessment of statistical and factual material (Michaletz, Johnson, 2007; Yakimov, Ponomarev, 2020).</span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;">Thermal injury resulting from a forest fire can trigger a whole set of complex mechanisms for changing the physiology of trees in the post-fire period (Bar et al., 2019). The effects of wildfire impact on trees can manifest themselves in different ways depending on the characteristics of a particular wildfire (Michaletz, Johnson, 2007; O’Brien et al., 2018). High-intensity crown forest fires burn living and dead biomass in the tree crown. Burning of all foliage or needles and meristems can cause immediate tree death if the tree is not able to sprout from heat-resistant organs (Clarke et al., 2013; Pausas, Keeley, 2017). The consequences of forest fires for two types of trees differ: primary and secondary (Michaletz, Johnson, 2007). Primary effects are a direct consequence of heat transfer from the combustion zone of forest fuels to the root system, trunk and crown of a tree (Michaletz, Johnson, 2007; Bergman, Incropera, 2011). Tree tissue death caused by protein denaturation generally occurs at 60 °C (Rosenberg et al., 1971). However, the rate of cell death increases exponentially with temperature. That is, lower temperatures can also lead to cell death in the case of prolonged exposure to elevated temperatures (Hare, 1961; Dickinson, Johnson, 2004). Heat transfer from the burning zone to the crown of a tree can cause immediate necrosis of buds or foliage, as well as damage to the cambium and phloem of branches. The degree of damage to crown components depends on their thermophysical properties and the characteristics of the forest fire, as well as the height of the lower boundary of the tree crown (van Wagner, 1973; Michaletz, Johnson, 2006, 2007). In large canopy components, such as branches, there is an internal temperature gradient and the process of heat conduction within this component becomes important. It is important to understand that the conduction velocity decreases with the radial coordinate and therefore the thickness and properties of the cortical layer are important (Michaletz et al., 2013; Pounden et al., 2014). The secondary effects of forest fires are more complex and their mechanisms are not yet fully understood. The response of vegetation functions to thermal damage can vary widely (Bar et al., 2019). On the one hand, trees after a forest fire can demonstrate a violation of physiological activity, reduced growth, and delayed death (Lambert, Stohlgren, 1988; van Mantgem, Schwartz, 2003; van Mantgem et al., 2011; Thompson et al., 2017). On the other hand, it is known that injured trees can be superior in the short to medium term (Pearson et al., 1972; Battipaglia et al., 2014; Valor et al., 2018).</span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;">However, it is necessary to develop mathematical methods for assessing the consequences of the impact of forest fire damaging factors on trees and their individual parts. In particular, it is important to understand the processes of formation of thermal damage to the branch of a coniferous tree. In this regard, the following goal of the study is formulated.</span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;">Purpose of the work is to mathematically model heat transfer in the branches of a coniferous tree under the influence of elevated temperature from the front of a forest fire.</span></p>
<p style="text-align: center;"><span style="font-family: 'times new roman', times, serif; color: #000000;"><strong>MATERIALS AND METHODS</strong></span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;">Object of study: coniferous trees, namely, pine, larch, fir (Lesoteka, 2020). The subject of research is the mathematical modeling of the heat transfer process in the branches of a coniferous tree.</span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;">The method of finite differences is used to solve a differential equation in partial derivatives (Samarsky, Vabishchevich, 2003). The coniferous branch represents a cylindrical system. The flame front of a forest fire acts on the branch. The boundary condition of the first kind at the boundary of the branch sets the temperature value for each moment of time. For a cylindrical system, the heat conduction equation will have the form:</span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;"><img loading="lazy" class="aligncenter" src="https://jfsi.ru/wp-content/uploads/2021/07/%D0%A1%D0%BD%D0%B8%D0%BC%D0%BE%D0%BA-%D1%8D%D0%BA%D1%80%D0%B0%D0%BD%D0%B0-2021-07-27-%D0%B2-22.35.34.png" alt="" width="502" height="108" />.                                                </span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;">In its final form, equation (1) after approximation of partial derivatives is presented in the following form:</span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;"><img src="https://jfsi.ru/wp-content/uploads/2021/07/%D0%A1%D0%BD%D0%B8%D0%BC%D0%BE%D0%BA-%D1%8D%D0%BA%D1%80%D0%B0%D0%BD%D0%B0-2021-07-27-%D0%B2-22.35.50.png" /></span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;">where ρ, c, λ, T – density, heat capacity, thermal conductivity and temperature of the material; r is the spatial coordinate; t is time; n is the layer number in time; i is the number of the node in the spatial coordinate; τ and h are steps in time and space.</span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;">Computational experiments were carried out taking into account the initial data presented in tables 1–4.</span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;"><strong>Table 1. </strong>Thermophysical properties of the environment (Grishin, 1997)</span></p>
<div style="overflow-x: auto;">
<table style="border: 1px #f1f1f1 solid; background-color: #ffffff;">
<tbody>
<tr>
<td rowspan="2" width="80"><span style="font-family: 'times new roman', times, serif; color: #000000;">Part</span></p>
<p><span style="font-family: 'times new roman', times, serif; color: #000000;">(Fig.1)</span></td>
<td rowspan="2" width="90"><span style="font-family: 'times new roman', times, serif; color: #000000;">Title</span></td>
<td colspan="3" width="246"><span style="font-family: 'times new roman', times, serif; color: #000000;">Characteristics</span></td>
</tr>
<tr>
<td width="76"><span style="font-family: 'times new roman', times, serif; color: #000000;">ρ, kg/m<sup>3</sup></span></td>
<td width="85"><span style="font-family: 'times new roman', times, serif; color: #000000;">с, J/kg K</span></td>
<td width="85"><span style="font-family: 'times new roman', times, serif; color: #000000;">λ, W/m K</span></td>
</tr>
<tr>
<td width="80"><span style="font-family: 'times new roman', times, serif; color: #000000;">4</span></td>
<td width="90"><span style="font-family: 'times new roman', times, serif; color: #000000;">Flame zone</span></td>
<td width="76"><span style="font-family: 'times new roman', times, serif; color: #000000;">0.656</span></td>
<td width="85"><span style="font-family: 'times new roman', times, serif; color: #000000;">2483</span></td>
<td width="85"><span style="font-family: 'times new roman', times, serif; color: #000000;">0.1836</span></td>
</tr>
</tbody>
</table>
</div>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;"><strong>Table 2. </strong>Thermophysical properties of branches (Grishin, 1997)</span></p>
<div style="overflow-x: auto;">
<table style="border: 1px #f1f1f1 solid; background-color: #ffffff;" width="603">
<tbody>
<tr>
<td colspan="9" width="603"><span style="font-family: 'times new roman', times, serif; color: #000000;">Pine</span></td>
</tr>
<tr>
<td colspan="3" width="206"><span style="font-family: 'times new roman', times, serif; color: #000000;">ρ, kg/m<sup>3</sup></span></td>
<td colspan="3" width="198"><span style="font-family: 'times new roman', times, serif; color: #000000;">с, J/kg K</span></td>
<td colspan="3" width="198"><span style="font-family: 'times new roman', times, serif; color: #000000;">λ, W/m K</span></td>
</tr>
<tr>
<td width="74"><span style="font-family: 'times new roman', times, serif; color: #000000;">Core</span></td>
<td width="66"><span style="font-family: 'times new roman', times, serif; color: #000000;">Bark</span></td>
<td width="66"><span style="font-family: 'times new roman', times, serif; color: #000000;">Needles</span></td>
<td width="66"><span style="font-family: 'times new roman', times, serif; color: #000000;">Core</span></td>
<td width="66"><span style="font-family: 'times new roman', times, serif; color: #000000;">Bark</span></td>
<td width="66"><span style="font-family: 'times new roman', times, serif; color: #000000;">Needles</span></td>
<td width="66"><span style="font-family: 'times new roman', times, serif; color: #000000;">Core</span></td>
<td width="66"><span style="font-family: 'times new roman', times, serif; color: #000000;">Bark</span></td>
<td width="66"><span style="font-family: 'times new roman', times, serif; color: #000000;">Needles</span></td>
</tr>
<tr>
<td width="74"><span style="font-family: 'times new roman', times, serif; color: #000000;">500</span></td>
<td width="66"><span style="font-family: 'times new roman', times, serif; color: #000000;">500</span></td>
<td width="66"><span style="font-family: 'times new roman', times, serif; color: #000000;">500</span></td>
<td width="66"><span style="font-family: 'times new roman', times, serif; color: #000000;">1800</span></td>
<td width="66"><span style="font-family: 'times new roman', times, serif; color: #000000;">1670</span></td>
<td width="66"><span style="font-family: 'times new roman', times, serif; color: #000000;">1400</span></td>
<td width="66"><span style="font-family: 'times new roman', times, serif; color: #000000;">0.12</span></td>
<td width="66"><span style="font-family: 'times new roman', times, serif; color: #000000;">0.12</span></td>
<td width="66"><span style="font-family: 'times new roman', times, serif; color: #000000;">0.102</span></td>
</tr>
<tr>
<td colspan="9" width="603"><span style="font-family: 'times new roman', times, serif; color: #000000;">Larch</span></td>
</tr>
<tr>
<td width="74"><span style="font-family: 'times new roman', times, serif; color: #000000;">660</span></td>
<td width="66"><span style="font-family: 'times new roman', times, serif; color: #000000;">660</span></td>
<td width="66"><span style="font-family: 'times new roman', times, serif; color: #000000;">500</span></td>
<td width="66"><span style="font-family: 'times new roman', times, serif; color: #000000;">2170</span></td>
<td width="66"><span style="font-family: 'times new roman', times, serif; color: #000000;">2170</span></td>
<td width="66"><span style="font-family: 'times new roman', times, serif; color: #000000;">1400</span></td>
<td width="66"><span style="font-family: 'times new roman', times, serif; color: #000000;">0.13</span></td>
<td width="66"><span style="font-family: 'times new roman', times, serif; color: #000000;">0.13</span></td>
<td width="66"><span style="font-family: 'times new roman', times, serif; color: #000000;">0.102</span></td>
</tr>
<tr>
<td width="74"></td>
<td colspan="8" width="529"><span style="font-family: 'times new roman', times, serif; color: #000000;">Fir</span></td>
</tr>
<tr>
<td width="74"><span style="font-family: 'times new roman', times, serif; color: #000000;">450</span></td>
<td width="66"><span style="font-family: 'times new roman', times, serif; color: #000000;">450</span></td>
<td width="66"><span style="font-family: 'times new roman', times, serif; color: #000000;">500</span></td>
<td width="66"><span style="font-family: 'times new roman', times, serif; color: #000000;">2700</span></td>
<td width="66"><span style="font-family: 'times new roman', times, serif; color: #000000;">2700</span></td>
<td width="66"><span style="font-family: 'times new roman', times, serif; color: #000000;">1400</span></td>
<td width="66"><span style="font-family: 'times new roman', times, serif; color: #000000;">0.15</span></td>
<td width="66"><span style="font-family: 'times new roman', times, serif; color: #000000;">0.15</span></td>
<td width="66"><span style="font-family: 'times new roman', times, serif; color: #000000;">0.102</span></td>
</tr>
</tbody>
</table>
</div>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;"><strong> </strong></span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;"><strong>Table 3. </strong>Geometric dimensions of the branch</span></p>
<div style="overflow-x: auto;">
<table style="border: 1px #f1f1f1 solid; background-color: #ffffff;">
<tbody>
<tr>
<td width="47"><span style="font-family: 'times new roman', times, serif; color: #000000;">№</span></td>
<td width="131"><span style="font-family: 'times new roman', times, serif; color: #000000;">Parameter</span></td>
<td width="105"><span style="font-family: 'times new roman', times, serif; color: #000000;">Core</span></td>
<td width="85"><span style="font-family: 'times new roman', times, serif; color: #000000;">Bark</span></td>
<td width="95"><span style="font-family: 'times new roman', times, serif; color: #000000;">Needles</span></td>
</tr>
<tr>
<td width="47"><span style="font-family: 'times new roman', times, serif; color: #000000;">1</span></td>
<td width="131"><span style="font-family: 'times new roman', times, serif; color: #000000;">Width (r, м)</span></td>
<td width="105"><span style="font-family: 'times new roman', times, serif; color: #000000;">0.008</span></td>
<td width="85"><span style="font-family: 'times new roman', times, serif; color: #000000;">0.011</span></td>
<td width="95"><span style="font-family: 'times new roman', times, serif; color: #000000;">0.041</span></td>
</tr>
<tr>
<td width="47"><span style="font-family: 'times new roman', times, serif; color: #000000;">2</span></td>
<td width="131"><span style="font-family: 'times new roman', times, serif; color: #000000;">Width (r, м)</span></td>
<td width="105"><span style="font-family: 'times new roman', times, serif; color: #000000;">0.008</span></td>
<td width="85"><span style="font-family: 'times new roman', times, serif; color: #000000;">0.012</span></td>
<td width="95"><span style="font-family: 'times new roman', times, serif; color: #000000;">0.045</span></td>
</tr>
<tr>
<td width="47"><span style="font-family: 'times new roman', times, serif; color: #000000;">3</span></td>
<td width="131"><span style="font-family: 'times new roman', times, serif; color: #000000;">Distance (r, м)</span></td>
<td width="105"><span style="font-family: 'times new roman', times, serif; color: #000000;">0.008</span></td>
<td width="85"><span style="font-family: 'times new roman', times, serif; color: #000000;">0.013</span></td>
<td width="95"><span style="font-family: 'times new roman', times, serif; color: #000000;">0.049</span></td>
</tr>
</tbody>
</table>
</div>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;"><strong> </strong></span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;"><strong>Table 4. </strong>Temperature range in the flame zone</span></p>
<div style="overflow-x: auto;">
<table style="border: 1px #f1f1f1 solid; background-color: #ffffff;">
<tbody>
<tr>
<td width="95"><span style="font-family: 'times new roman', times, serif; color: #000000;">Branch</span></td>
<td width="85"><span style="font-family: 'times new roman', times, serif; color: #000000;">Pine</span></td>
<td width="104"><span style="font-family: 'times new roman', times, serif; color: #000000;">Larch</span></td>
<td width="85"><span style="font-family: 'times new roman', times, serif; color: #000000;">Fir</span></td>
</tr>
<tr>
<td width="95"><span style="font-family: 'times new roman', times, serif; color: #000000;">T<sub>f</sub> , °C</span></td>
<td width="85"><span style="font-family: 'times new roman', times, serif; color: #000000;">800, 900, 1000</span></td>
<td width="104"><span style="font-family: 'times new roman', times, serif; color: #000000;">800, 900, 1000</span></td>
<td width="85"><span style="font-family: 'times new roman', times, serif; color: #000000;">800, 900, 1000</span></td>
</tr>
</tbody>
</table>
</div>
<p style="text-align: center;"><span style="font-family: 'times new roman', times, serif; color: #000000;"><strong>RESULTS AND DISCUSSION</strong></span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;">The physical model of the forest fire impact on the branch of a coniferous tree is formulated taking into account the following assumptions:</span></p>
<ol style="text-align: justify;">
<li><span style="font-family: 'times new roman', times, serif; color: #000000;">A one-dimensional setting is considered.</span></li>
<li><span style="font-family: 'times new roman', times, serif; color: #000000;">The multilayer structure of the branch is considered.</span></li>
<li><span style="font-family: 'times new roman', times, serif; color: #000000;">The monolithic structure of the branch is considered.</span></li>
<li><span style="font-family: 'times new roman', times, serif; color: #000000;">Heat transfer in the «branch-needles-flame zone» system due to conduction.</span></li>
<li><span style="font-family: 'times new roman', times, serif; color: #000000;">Thermophysical parameters do not depend on temperature.</span></li>
<li><span style="font-family: 'times new roman', times, serif; color: #000000;">The evaporation of moisture is neglected.</span></li>
<li><span style="font-family: 'times new roman', times, serif; color: #000000;">Pyrolysis of dry organic matter is neglected.</span></li>
<li><span style="font-family: 'times new roman', times, serif; color: #000000;">The source of the temperature rise is modeled by specifying an area of elevated temperature near the branch.</span></li>
<li><span style="font-family: 'times new roman', times, serif; color: #000000;">The situation when the source is stationary is considered.</span></li>
</ol>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;">The branch is a cylindrical system, which includes the core of the branch, the bark layer and the layer of needles. The branch interacts with the flame zone. The graphic image is shown in Figure 1. The impact of a forest fire is described by the boundary conditions of the first kind.</span></p>
<div id="attachment_4982" style="width: 760px" class="wp-caption aligncenter"><img aria-describedby="caption-attachment-4982" loading="lazy" class="wp-image-4982 size-full" src="https://jfsi.ru/wp-content/uploads/2022/04/Fig-1-1.jpg" alt="" width="750" height="749" srcset="https://jfsi.ru/wp-content/uploads/2022/04/Fig-1-1.jpg 750w, https://jfsi.ru/wp-content/uploads/2022/04/Fig-1-1-300x300.jpg 300w, https://jfsi.ru/wp-content/uploads/2022/04/Fig-1-1-150x150.jpg 150w, https://jfsi.ru/wp-content/uploads/2022/04/Fig-1-1-160x160.jpg 160w, https://jfsi.ru/wp-content/uploads/2022/04/Fig-1-1-320x320.jpg 320w" sizes="(max-width: 750px) 100vw, 750px" /><p id="caption-attachment-4982" class="wp-caption-text"><span style="font-family: 'times new roman', times, serif; color: #000000;"><strong>Figure 1.</strong> Geometry of the solution area: 1 — core, 2 — bark, 3 — needles,</span><br /><span style="font-family: 'times new roman', times, serif; color: #000000;">4 — flame zone</span></p></div>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;">Mathematically, the process of forest fire impact is described by a system of heat conduction equations:</span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;"><img loading="lazy" class="aligncenter" src="https://jfsi.ru/wp-content/uploads/2021/07/%D0%A1%D0%BD%D0%B8%D0%BC%D0%BE%D0%BA-%D1%8D%D0%BA%D1%80%D0%B0%D0%BD%D0%B0-2021-07-27-%D0%B2-22.36.41.png" width="651" height="236" /></span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;"><img loading="lazy" class="aligncenter" src="https://jfsi.ru/wp-content/uploads/2021/07/%D0%A1%D0%BD%D0%B8%D0%BC%D0%BE%D0%BA-%D1%8D%D0%BA%D1%80%D0%B0%D0%BD%D0%B0-2021-07-27-%D0%B2-22.36.48.png" width="651" height="286" /></span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;">Boundary conditions:</span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;"><img loading="lazy" class="aligncenter" src="https://jfsi.ru/wp-content/uploads/2021/07/%D0%A1%D0%BD%D0%B8%D0%BC%D0%BE%D0%BA-%D1%8D%D0%BA%D1%80%D0%B0%D0%BD%D0%B0-2021-07-27-%D0%B2-22.36.59.png" width="592" height="235" /></span></p>
<p><span style="font-family: 'times new roman', times, serif; color: #000000;"><img loading="lazy" class="aligncenter" src="https://jfsi.ru/wp-content/uploads/2021/07/%D0%A1%D0%BD%D0%B8%D0%BC%D0%BE%D0%BA-%D1%8D%D0%BA%D1%80%D0%B0%D0%BD%D0%B0-2021-07-27-%D0%B2-22.37.06.png" width="597" height="344" /></span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;">Initial conditions:</span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;"><img loading="lazy" class="aligncenter" src="https://jfsi.ru/wp-content/uploads/2021/07/%D0%A1%D0%BD%D0%B8%D0%BC%D0%BE%D0%BA-%D1%8D%D0%BA%D1%80%D0%B0%D0%BD%D0%B0-2021-07-27-%D0%B2-22.37.58.png" width="550" height="72" /></span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;">where ρ<sub>i</sub>, с<sub>i</sub>, T<sub>i</sub>, λ<sub>i</sub> — density, heat capacity, temperature, thermal conductivity (i = 1 — the core of the branch, i = 2 — the bark, i = 3 — needles, i = 4 — flame zones); T<sub>fire</sub> — temperature in the fire front; t is time; r is the spatial coordinate; R<sub>1</sub> — border of the core and bark; R is the boundary of the bark and the layer of needles; R<sub>N</sub> is the boundary of the outer layer of needles; R<sub>f1</sub> is the boundary of the solution area. Index «0» is responsible for the parameter at the initial time.</span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;">The presented system of equations with the corresponding initial and boundary conditions is solved using the finite difference method. Finite-difference analogues of differential equations are solved by the marching method (Samarsky, Vabishchevich, 2003).</span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;">The process of thermal impact of a forest fire front on a branch of a coniferous tree is due to heat transfer due to conduction in the layered structure of the branch. Heating is carried out at the outer boundary of the branch and is mathematically described by the boundary conditions of the first kind, which simulate the effect of the flame zone. Further, heat is transferred from a more heated area to a less heated area.</span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;">Based on the results of computational experiments, graphical dependencies were constructed demonstrating the temperature distribution in the «branch — needle — flame zone» system.</span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;">Figures 2–4 show the temperature distributions in the «branch — needles — flame zone» system for various scenarios of the impact of a forest fire on a pine branch.</span></p>
<p>&nbsp;</p>
<p>&nbsp;</p>
<p>&nbsp;</p>
<div id="attachment_4983" style="width: 1034px" class="wp-caption aligncenter"><img aria-describedby="caption-attachment-4983" loading="lazy" class="wp-image-4983 size-large" src="https://jfsi.ru/wp-content/uploads/2022/04/Fig-2-1-1024x755.jpg" alt="" width="1024" height="755" srcset="https://jfsi.ru/wp-content/uploads/2022/04/Fig-2-1-1024x755.jpg 1024w, https://jfsi.ru/wp-content/uploads/2022/04/Fig-2-1-300x221.jpg 300w, https://jfsi.ru/wp-content/uploads/2022/04/Fig-2-1-150x111.jpg 150w, https://jfsi.ru/wp-content/uploads/2022/04/Fig-2-1-768x566.jpg 768w, https://jfsi.ru/wp-content/uploads/2022/04/Fig-2-1.jpg 1289w" sizes="(max-width: 1024px) 100vw, 1024px" /><p id="caption-attachment-4983" class="wp-caption-text"><span style="font-family: 'times new roman', times, serif; color: #000000;"><strong>Figure 2.</strong> Temperature distribution at Tfire = 800 °C on a pine branch according to the relevant schemes (table 3): a) with a bark thickness of 0.011 m and a needle length of 0.041 m, b) with a bark thickness of 0.012 m and a needle length of 0.045 m, c) with a bark thickness of 0.013 m and a needle length of 0.049 m. Heating time 1 s  </span></p></div>
<div id="attachment_4975" style="width: 1034px" class="wp-caption aligncenter"><img aria-describedby="caption-attachment-4975" loading="lazy" class="size-large wp-image-4975" src="https://jfsi.ru/wp-content/uploads/2022/04/Fig-3-1024x754.jpg" alt="" width="1024" height="754" srcset="https://jfsi.ru/wp-content/uploads/2022/04/Fig-3-1024x754.jpg 1024w, https://jfsi.ru/wp-content/uploads/2022/04/Fig-3-300x221.jpg 300w, https://jfsi.ru/wp-content/uploads/2022/04/Fig-3-150x110.jpg 150w, https://jfsi.ru/wp-content/uploads/2022/04/Fig-3-768x565.jpg 768w, https://jfsi.ru/wp-content/uploads/2022/04/Fig-3.jpg 1272w" sizes="(max-width: 1024px) 100vw, 1024px" /><p id="caption-attachment-4975" class="wp-caption-text"><span style="font-family: 'times new roman', times, serif; color: #000000;"><strong>Figure 3.</strong> Temperature distribution at Tfire = 900 °C on a pine branch according to the relevant schemes (table 3): a) with a bark thickness of 0.011 m and a needle length of 0.041 m, b) with a bark thickness of 0.012 m and a needle length of 0.045 m, c) with a bark thickness of 0.013 m and a needle length of 0.049 m. Heating time 1 s</span></p></div>
<div id="attachment_4976" style="width: 1034px" class="wp-caption aligncenter"><img aria-describedby="caption-attachment-4976" loading="lazy" class="size-large wp-image-4976" src="https://jfsi.ru/wp-content/uploads/2022/04/Fig-4-1024x770.jpg" alt="" width="1024" height="770" srcset="https://jfsi.ru/wp-content/uploads/2022/04/Fig-4-1024x770.jpg 1024w, https://jfsi.ru/wp-content/uploads/2022/04/Fig-4-300x226.jpg 300w, https://jfsi.ru/wp-content/uploads/2022/04/Fig-4-150x113.jpg 150w, https://jfsi.ru/wp-content/uploads/2022/04/Fig-4-768x577.jpg 768w, https://jfsi.ru/wp-content/uploads/2022/04/Fig-4.jpg 1257w" sizes="(max-width: 1024px) 100vw, 1024px" /><p id="caption-attachment-4976" class="wp-caption-text"><span style="font-family: 'times new roman', times, serif; color: #000000;"><strong>Figure 4.</strong> Temperature distribution at Tfire=1000 °C on a pine branch according to the relevant schemes (table 3): a) with a bark thickness of 0.011 m and a needle length of 0.041 m, b) with a bark thickness of 0.012 m and a needle length of 0.045 m, c) with a bark thickness of 0.013 m and a needle length of 0.049 m. Heating time 1 s</span></p></div>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;">Figures 5–7 show the temperature distributions in the «branch — needles — flame zone» system for various scenarios of the impact of a forest fire on a larch branch.</span></p>
<div id="attachment_4977" style="width: 1034px" class="wp-caption aligncenter"><img aria-describedby="caption-attachment-4977" loading="lazy" class="size-large wp-image-4977" src="https://jfsi.ru/wp-content/uploads/2022/04/Fig-5-1024x762.jpg" alt="" width="1024" height="762" srcset="https://jfsi.ru/wp-content/uploads/2022/04/Fig-5-1024x762.jpg 1024w, https://jfsi.ru/wp-content/uploads/2022/04/Fig-5-300x223.jpg 300w, https://jfsi.ru/wp-content/uploads/2022/04/Fig-5-150x112.jpg 150w, https://jfsi.ru/wp-content/uploads/2022/04/Fig-5-768x571.jpg 768w, https://jfsi.ru/wp-content/uploads/2022/04/Fig-5.jpg 1249w" sizes="(max-width: 1024px) 100vw, 1024px" /><p id="caption-attachment-4977" class="wp-caption-text"><span style="font-family: 'times new roman', times, serif; color: #000000;"><strong>Figure 5.</strong> Temperature distribution at Tfire = 800 °C on a larch branch according to the relevant schemes (table 3): a) with a bark thickness of 0.011 m and a needle length of 0.041 m, b) with a bark thickness of 0.012 m and a needle length of 0.045 m, c) with a bark thickness of 0.013 m and a needle length of 0.049 m. Heating time 1 s</span></p></div>
<div id="attachment_4978" style="width: 1034px" class="wp-caption aligncenter"><img aria-describedby="caption-attachment-4978" loading="lazy" class="size-large wp-image-4978" src="https://jfsi.ru/wp-content/uploads/2022/04/Fig-6-1024x771.jpg" alt="" width="1024" height="771" srcset="https://jfsi.ru/wp-content/uploads/2022/04/Fig-6-1024x771.jpg 1024w, https://jfsi.ru/wp-content/uploads/2022/04/Fig-6-300x226.jpg 300w, https://jfsi.ru/wp-content/uploads/2022/04/Fig-6-150x113.jpg 150w, https://jfsi.ru/wp-content/uploads/2022/04/Fig-6-768x578.jpg 768w, https://jfsi.ru/wp-content/uploads/2022/04/Fig-6.jpg 1233w" sizes="(max-width: 1024px) 100vw, 1024px" /><p id="caption-attachment-4978" class="wp-caption-text"><span style="font-family: 'times new roman', times, serif; color: #000000;"><strong>Figure 6.</strong> Temperature distribution at Tfire =  900 °C on a larch branch according to the relevant schemes (table 3): a) with a bark thickness of 0.011 m and a needle length of 0.041 m, b) with a bark thickness of 0.012 m and a needle length of 0.045 m, c) with a bark thickness of 0.013 m and a needle length of 0.049 m. Heating time 1 s</span></p></div>
<div id="attachment_4979" style="width: 1034px" class="wp-caption aligncenter"><img aria-describedby="caption-attachment-4979" loading="lazy" class="size-large wp-image-4979" src="https://jfsi.ru/wp-content/uploads/2022/04/Fig-7-1024x756.jpg" alt="" width="1024" height="756" srcset="https://jfsi.ru/wp-content/uploads/2022/04/Fig-7-1024x756.jpg 1024w, https://jfsi.ru/wp-content/uploads/2022/04/Fig-7-300x222.jpg 300w, https://jfsi.ru/wp-content/uploads/2022/04/Fig-7-150x111.jpg 150w, https://jfsi.ru/wp-content/uploads/2022/04/Fig-7-768x567.jpg 768w, https://jfsi.ru/wp-content/uploads/2022/04/Fig-7.jpg 1258w" sizes="(max-width: 1024px) 100vw, 1024px" /><p id="caption-attachment-4979" class="wp-caption-text"><span style="font-family: 'times new roman', times, serif; color: #000000;"><strong>Figure 7.</strong> Temperature distribution at Tfire = 1000 °C on a larch branch according to the corresponding schemes (table 3): a) with a bark thickness of 0.011 m and a needle length of 0.041 m, b) with a bark thickness of 0.012 m and a needle length of 0.045 m, c) with a bark thickness of 0.013 m and a needle length of 0.049 m. Heating time 1 s</span></p></div>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;">Figures 8–10 show the temperature distributions in the «branch — needles — flame zone» system for various scenarios of the impact of a forest fire on a fir branch.</span></p>
<div id="attachment_4980" style="width: 1034px" class="wp-caption aligncenter"><img aria-describedby="caption-attachment-4980" loading="lazy" class="size-large wp-image-4980" src="https://jfsi.ru/wp-content/uploads/2022/04/Fig-8-1024x796.jpg" alt="" width="1024" height="796" srcset="https://jfsi.ru/wp-content/uploads/2022/04/Fig-8-1024x796.jpg 1024w, https://jfsi.ru/wp-content/uploads/2022/04/Fig-8-300x233.jpg 300w, https://jfsi.ru/wp-content/uploads/2022/04/Fig-8-150x117.jpg 150w, https://jfsi.ru/wp-content/uploads/2022/04/Fig-8-768x597.jpg 768w, https://jfsi.ru/wp-content/uploads/2022/04/Fig-8.jpg 1225w" sizes="(max-width: 1024px) 100vw, 1024px" /><p id="caption-attachment-4980" class="wp-caption-text"><span style="font-family: 'times new roman', times, serif; color: #000000;">Figure 8. Temperature distribution at Tfire = 800 °C on a fir branch according to the relevant schemes (table 3): a) with a bark thickness of 0.011 m and a needle length of 0.041 m, b) with a bark thickness of 0.012 m and a needle length of 0.045 m, c) with a bark thickness of 0.013 m and a needle length of 0.049 m. Heating time 1 s</span></p></div>
<div id="attachment_4981" style="width: 1034px" class="wp-caption aligncenter"><img aria-describedby="caption-attachment-4981" loading="lazy" class="size-large wp-image-4981" src="https://jfsi.ru/wp-content/uploads/2022/04/Fig-9-1024x754.jpg" alt="" width="1024" height="754" srcset="https://jfsi.ru/wp-content/uploads/2022/04/Fig-9-1024x754.jpg 1024w, https://jfsi.ru/wp-content/uploads/2022/04/Fig-9-300x221.jpg 300w, https://jfsi.ru/wp-content/uploads/2022/04/Fig-9-150x110.jpg 150w, https://jfsi.ru/wp-content/uploads/2022/04/Fig-9-768x565.jpg 768w, https://jfsi.ru/wp-content/uploads/2022/04/Fig-9.jpg 1259w" sizes="(max-width: 1024px) 100vw, 1024px" /><p id="caption-attachment-4981" class="wp-caption-text"><span style="font-family: 'times new roman', times, serif; color: #000000;"><strong>Figure 9.</strong> Temperature distribution at Tfire = 900 °C on a fir branch according to the relevant schemes (table 3): a) with a bark thickness of 0.011 m and a needle length of 0.041 m, b) with a bark thickness of 0.012 m and a needle length of 0.045 m, c) with a bark thickness of 0.013 m and a needle length of 0.049 m. Heating time 1 s</span></p></div>
<div id="attachment_4972" style="width: 1034px" class="wp-caption aligncenter"><img aria-describedby="caption-attachment-4972" loading="lazy" class="size-large wp-image-4972" src="https://jfsi.ru/wp-content/uploads/2022/04/Fig-10-1024x755.jpg" alt="" width="1024" height="755" srcset="https://jfsi.ru/wp-content/uploads/2022/04/Fig-10-1024x755.jpg 1024w, https://jfsi.ru/wp-content/uploads/2022/04/Fig-10-300x221.jpg 300w, https://jfsi.ru/wp-content/uploads/2022/04/Fig-10-150x111.jpg 150w, https://jfsi.ru/wp-content/uploads/2022/04/Fig-10-768x566.jpg 768w, https://jfsi.ru/wp-content/uploads/2022/04/Fig-10.jpg 1254w" sizes="(max-width: 1024px) 100vw, 1024px" /><p id="caption-attachment-4972" class="wp-caption-text"><span style="font-family: 'times new roman', times, serif; color: #000000;"><strong>Figure 10.</strong> Temperature distribution at Tfire=1000 °C on a fir branch according to the relevant schemes (table 3): a) with a bark thickness of 0.011 m and a needle length of 0.041 m, b) with a bark thickness of 0.012 m and a needle length of 0.045 m, c) with a bark thickness of 0.013 m and a needle length of 0.049 m. Heating time 1 s</span></p></div>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;">An analysis of the temperature dependences in Figures 2–4 shows that for all geometry schemes of the solution area, an increased temperature is observed in the upper part of the needles during the specified time interval of exposure to the forest fire flame. The closer the needle is to the flame front, the higher the temperature at its end. When exposed to a low-intensity surface fire at the end of a pine needle, temperatures of the order of 360 °C are observed for scheme <em>a</em> and 400 °C, 600 °C for schemes <em>b</em> and <em>c</em>, while during a high-intensity surface fire, these temperatures are respectively 390 °C, 460 °C, 660 °C. The crown forest fire leads to heating of the needles to temperatures of the order of 400 °C, 480 °C, 720 °C. The analysis of temperature dependences in Figures 5–7 (larch) and Figures 8–10 (fir) demonstrates similar temperatures at the end of the needles for all types of forest fires considered. At temperatures up to 400 °C, intensive thermal decomposition of the dry organic material of the needles occurs. At a higher temperature, ignition of the needles can already be observed, which can lead to irreversible consequences for a separately considered coniferous tree.</span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;">It should be noted that the burning of all needles and meristem can cause immediate death of the tree if the tree is not able to sprout from heat-resistant organs (Clarke et al., 2013; Pausas, Keeley, 2017).</span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;">Thus, mathematical modeling of the thermal impact from the flame of a forest fire on a branch of a coniferous tree was carried out. Three impact scenarios by forest fire type are considered: low intensity surface fire (800 °C), high intensity surface fire (900 °C) and crown forest fire (1000 °C). Three different schemes were also explored, describing the various geometric structures of a branch of a coniferous tree. It is clear that these are approximate data and in a real situation the geometry of a branch can differ significantly from the type of tree, the growing season and age of the tree, as well as its physiological state. Using only a thermophysical model to study heat transfer in a coniferous tree branch showed that the temperature distributions for different species are quite similar. This means that further modernization of this mathematical model is necessary. Thus, it is necessary to take into account the evaporation of moisture and the thermal decomposition of dry organic matter. In addition, subsequent studies should take into account data on the physiological activity of various species and experimental data on the death of tree tissues at various temperatures. That is, it is necessary to supplement the developed mathematical model with criteria for damage to branch tissues depending on the temperature in the forest fire front and the duration of exposure. Another way to improve the mathematical model can be to take into account convective and radiant heat transfer at the outer boundary of the branch directly exposed to the damaging factors of a forest fire. In the future, such a mathematical model can be used as a basis for creating software tools in specialized geoinformation systems for monitoring the state of forest stands and predicting their functioning in the post-fire period.</span></p>
<p style="text-align: center;"><span style="font-family: 'times new roman', times, serif; color: #000000;"><strong>CONCLUSION</strong></span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;">Thus, as a result of the study, a basic mathematical model of heat transfer in the layered structure of a coniferous tree branch was developed based on non-stationary differential equations of heat conduction with appropriate initial and boundary conditions. A preliminary analysis of the results obtained shows that the use of only developments in the field of heat transfer does not give a clear answer to questions regarding the formation of thermal lesions in the branches of various coniferous species. It is necessary to integrate into the mathematical model quantitative and qualitative criteria for the formation of thermal lesions, developed on the basis of an analysis of physiological processes and experiments on the effect of elevated temperature on wood tissues.</span></p>
<p style="text-align: center;"><span style="font-family: 'times new roman', times, serif; color: #000000;"><strong>ACKNOWLEDGEMENTS</strong></span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;">This work was financially supported by the Russian Foundation for Basic Researches. Scientific project Nо 17-29-05093.</span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;">                                                                                                             </span></p>
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<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;"><em>Lesoteka</em>, 2020, https://lesoteka.com/ (2021, 17 February)</span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;">Michaletz S. T., Johnson E. A., A heat transfer model of crown scorch in forest fires, <em>Canadian Journal of Forest Research</em>, 2006, Vol. 36, pp. 2839–2851.</span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;">Michaletz S. T., Johnson E. A., How Forest fires kill trees: a review of the fundamental biophysical processes, <em>Scandinavian Journal of Forest Research</em>, 2007, Vol. 22, pp. 500–515.</span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;">Michaletz S. T., Johnson E. A., Mell W. E., Greene D. F., Timing of fire relative to seed development may enable non-serotinous species to recolonize from the aerial seed banks of fire-killed trees, <em>Biogeosciences</em>, 2013, Vol. 10, pp. 5061–5078.</span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;">O’Brien J. J., Hiers J. K., Varner J. M., Hoffman C. M., Dickinson M. B., Michaletz S. T., Loudermilk E. L., Butler B. W., Advances in mechanistic approaches to quantifying biophysical fire effects, <em>Current Forestry Reports</em>, 2018, Vol. 4, pp. 161–177.</span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;">Pausas J. G., Keeley J. E., Epicormic resprouting in fire-prone ecosystems, <em>Trends in Plant Science</em>, 2017, Vol. 22, pp. 1008–1015.</span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;">Pearson H. A., Davis J. R., Schubert G. H., Effects of wildfire on timber and forage production in Arizona, <em>Journal of Range Management</em>, 1972, Vol. 25, pp. 250–253.</span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;">Pounden E., Greene D. F., Michaletz S. T., Non-serotinous woody plants behave as aerial seed bank species when a late-summer wildfire coincides with a mast year, <em>Ecology and Evolution</em>, 2014, Vol. 4, pp. 3830–3840.</span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;">Rosenberg B., Kemeny G., Switzer R. C., Hamilton T. C., Quantitative evidence for protein denaturation as the cause of thermal death, <em>Nature</em>, 1971, Vol. 232, pp. 471–473.</span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;">Samarskiy A. A., Vabishchevich P. N., <em>Vychislitelnaya teploperedacha</em> (Computational heat transfer). Moscow: Editorial URSS, 2003, 784 p.</span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;">Shilov I. A., <em>Ecologia</em> (Ecology), Moscow: High School, 2003, 512 p.</span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;">Thompson M. T. C., Koyama A., Kavanagh K. L., Wildfire effects on physiological properties in conifers of central Idaho forests, USA, <em>Trees</em>, 2017, Vol. 31, pp. 545–555.</span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;">Valor T., Casals P., Altieri S., Gonzalez-Olabarria J. R., Pique M., Battipaglia G., Disentangling the effects of crown scorch and competition release on the physiological and growth response of <em>Pinus halepensis</em> Mill. Using δ<sup>13</sup>C and δ<sup>18</sup>O isotopes, <em>Forest Ecology and Management</em>, 2018, Vol. 424, pp. 276–287.</span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;">van Mantgem P., Schwartz M., Bark heat resistance of small trees in Californian mixed conifer forests: testing some model assumptions, <em>Forest Ecology and Management</em>, 2003, Vol. 178, pp. 341–352.</span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;">van Mantgem P., Stephenson N. L., Knapp E., Battles J., Keeley J. E., Long-term effects of prescribed fire on mixed conifer structure in the Sierra Nevada, California, <em>Forest Ecology and Management</em>, 2011, Vol. 261, pp. 989–994.</span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;">van Wagner C. E., Height of crown scorch in forest fires, <em>Canadian Journal of Forest Research</em>, 1973, Vol. 3, pp. 373–378.</span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;">Yakimov N., Ponomarev E., Dynamics of post-fire effects in larch forests of Central Siberia based on Satellite data, <em>E3S Web of Conference</em>, 2020, Vol. 149, Article Nо 03008.</span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;"><strong> </strong></span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;"><strong> </strong></span></p>
<p style="text-align: justify;"><span style="font-family: 'times new roman', times, serif; color: #000000;"><strong>Reviewer:</strong> Candidate of Technical Sciences P. N. Goman</span></p>
<p style="text-align: justify;">
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		<title>№1 2022</title>
		<link>https://jfsi.ru/en/1-2022/</link>
		
		<dc:creator><![CDATA[lena]]></dc:creator>
		<pubDate>Thu, 24 Mar 2022 10:45:08 +0000</pubDate>
				<category><![CDATA[Новости]]></category>
		<guid isPermaLink="false">https://jfsi.ru/?p=4916</guid>

					<description><![CDATA[Review articles A. P. Geraskina, D. N. Tebenkova, D. V. Ershov, E. V. Ruchinskaya, N. V. Sibirtseva, N. V. Lukina WILDFIRES AS A FACTOR OF LOSS OF BIODIVERSITY AND FOREST ECOSYSTEM FUNCTIONS E. S.&#46;&#46;&#46;]]></description>
										<content:encoded><![CDATA[<div id="attachment_4917" style="width: 218px" class="wp-caption aligncenter"><img aria-describedby="caption-attachment-4917" loading="lazy" class="wp-image-4917 size-medium" src="https://jfsi.ru/wp-content/uploads/2022/03/Обложка-ВЛН-—-2022-1-208x300.jpg" alt="" width="208" height="300" srcset="https://jfsi.ru/wp-content/uploads/2022/03/Обложка-ВЛН-—-2022-1-208x300.jpg 208w, https://jfsi.ru/wp-content/uploads/2022/03/Обложка-ВЛН-—-2022-1-709x1024.jpg 709w, https://jfsi.ru/wp-content/uploads/2022/03/Обложка-ВЛН-—-2022-1-104x150.jpg 104w, https://jfsi.ru/wp-content/uploads/2022/03/Обложка-ВЛН-—-2022-1-768x1109.jpg 768w, https://jfsi.ru/wp-content/uploads/2022/03/Обложка-ВЛН-—-2022-1.jpg 1000w" sizes="(max-width: 208px) 100vw, 208px" /><p id="caption-attachment-4917" class="wp-caption-text"><span style="font-family: 'times new roman', times, serif;"><strong>№1 2022</strong></span></p></div>
<p style="font-weight: 400;"><span style="color: #000000; font-size: 18pt; font-family: 'times new roman', times, serif;"><strong><span style="font-style: inherit;"><span style="font-style: inherit;">Review articles</span></span></strong></span></p>
<p><span style="color: #000000; font-family: 'times new roman', times, serif;"><strong><b><span style="font-family: 'times new roman', times, serif;">A. P. Geraskina, D. N. Tebenkova, D. V. Ershov, E. V. Ruchinskaya, N. V. Sibirtseva, N. V. Lukina</span></b></strong></span><br />
<a href="https://jfsi.ru/en/wildfires/"><span style="font-family: 'times new roman', times, serif;"><strong><b>WILDFIRES AS A FACTOR OF LOSS OF BIODIVERSITY AND FOREST ECOSYSTEM FUNCTIONS</b></strong></span></a></p>
<p><span style="color: #000000; font-family: 'times new roman', times, serif;"><strong><b><span style="font-family: 'times new roman', times, serif;">E. S. Podolskaia</span></b></strong></span><br />
<a href="https://jfsi.ru/5-1-2022-podolskaia/"><span style="font-family: 'times new roman', times, serif;"><strong><b>REVIEW OF OPEN SOURCE QGIS FORESTRY PLUGINS</b></strong></span></a></p>
<p><span style="color: #000000; font-family: 'times new roman', times, serif;"><strong><b><span style="font-family: 'times new roman', times, serif;">E. A. Ivanova</span></b></strong></span><br />
<a href="https://jfsi.ru/en/5-1-2022-ivanova/"><span style="font-family: 'times new roman', times, serif;"><strong><b>TREE LITTER PRODUCTION AND DECOMPOSITION IN FOREST ECOSYSTEMS UNDER BACKGROUND CONDITIONS AND INDUSTRIAL AIR POLLUTION</b></strong></span></a></p>
<p><span style="color: #000000; font-family: 'times new roman', times, serif;"><strong><b><span style="font-family: 'times new roman', times, serif;">A. I. Kuznetsovа</span></b></strong></span><br />
<a href="https://jfsi.ru/en/5-1-2022-kuznetsov%d0%b0/"><span style="font-family: 'times new roman', times, serif;"><strong><b>INFLUENCE OF VEGETATION ON SOIL CARBON STOCKS IN FORESTS (REVIEW)</b></strong></span></a></p>
<p><span style="color: #000000; font-family: 'times new roman', times, serif;"><strong><b><span style="font-family: 'times new roman', times, serif;">S. A. Ermolov</span></b></strong></span><br />
<a href="https://jfsi.ru/en/5-1-2022-ermolov/"><span style="font-family: 'times new roman', times, serif;"><strong><b>APPROACHES TO ECOLOGICAL CLASSIFICATION OF EARTHWORMS: A REVIEW</b></strong></span></a></p>
<p><span style="font-family: 'times new roman', times, serif;"><strong><span style="color: #000000; font-family: 'times new roman', times, serif;"><b>A. S. Plotnikova</b></span><br />
<a href="https://jfsi.ru/en/5-1-2022-plotnikova/"><b><span lang="EN-US">I. S. </span><span lang="EN-GB">MELEKHOV’S SCALE</span><span lang="EN-GB"> </span><span lang="EN-GB">OF</span><span lang="EN-GB"> </span><span lang="EN-GB">NATURAL FIRE DANGER</span><span lang="EN-GB"> </span><span lang="EN-GB">OF</span><span lang="EN-GB"> </span><span lang="EN-GB">FOREST ECOSYSTEMS: OVERVIEW</span><span lang="EN-GB"> </span><span lang="EN-GB">OF</span><span lang="EN-GB"> </span><span lang="EN-GB">MODERN RUSSIAN METHODOLOGICAL APPROACHES</span></b></a></strong></span></p>
<p><span style="color: #000000; font-size: 18pt; font-family: 'times new roman', times, serif;"><strong><span style="font-style: inherit;"><span style="font-family: 'times new roman', times, serif;">Original Research</span></span></strong></span></p>
<p><span style="font-family: 'times new roman', times, serif;"><strong><span style="color: #000000; font-family: 'times new roman', times, serif;"><b>N. V. Baranovskiy, D. S. Menshikov</b></span><br />
<a href="https://jfsi.ru/en/5-1-2021-baranovskiy_menshikov/">MATHEMATICAL MODELING OF THE FOREST FIRE IMPACT ON THE BRANCH OF A CONIFEROUS TREE</a></strong></span></p>
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		<title>№4 2021</title>
		<link>https://jfsi.ru/en/4-2021/</link>
		
		<dc:creator><![CDATA[lena]]></dc:creator>
		<pubDate>Thu, 23 Dec 2021 12:56:30 +0000</pubDate>
				<category><![CDATA[Новости]]></category>
		<guid isPermaLink="false">https://jfsi.ru/?p=4684</guid>

					<description><![CDATA[DOI: 10.31509/2658-607x-2021-4 &#160; Review articles Podolskaia E. S. REVIEW OF EXPERIENCE IN SOLVING THE TRANSPORT MODELING TASKS IN THE FORESTRY S. A. Ermolov APPROACHES TO THE ECOLOGICAL CLASSIFICATION OF EARTHWORMS. A REVIEW A. I.&#46;&#46;&#46;]]></description>
										<content:encoded><![CDATA[<p><!--


<h2 class="gmail-jornualheader_mr_css_attr gmail-cufonfont_mr_css_attr" style="text-align: center;"><span style="font-family: 'times new roman', times, serif; color: #000000;">Issue is forthcoming</span></h2>


--></p>
<p style="text-align: center;"><span style="color: #000000; font-size: 14pt;"><strong><span style="font-family: 'times new roman', times, serif;">DOI: 10.31509/2658-607x-2021-4</span></strong></span></p>
<p><img loading="lazy" class="size-medium wp-image-4686 aligncenter" src="https://jfsi.ru/wp-content/uploads/2021/12/Обложка-ВЛН-—-4-англ-208x300.jpg" alt="" width="208" height="300" srcset="https://jfsi.ru/wp-content/uploads/2021/12/Обложка-ВЛН-—-4-англ-208x300.jpg 208w, https://jfsi.ru/wp-content/uploads/2021/12/Обложка-ВЛН-—-4-англ-709x1024.jpg 709w, https://jfsi.ru/wp-content/uploads/2021/12/Обложка-ВЛН-—-4-англ-104x150.jpg 104w, https://jfsi.ru/wp-content/uploads/2021/12/Обложка-ВЛН-—-4-англ-768x1109.jpg 768w, https://jfsi.ru/wp-content/uploads/2021/12/Обложка-ВЛН-—-4-англ-1063x1536.jpg 1063w, https://jfsi.ru/wp-content/uploads/2021/12/Обложка-ВЛН-—-4-англ-1418x2048.jpg 1418w, https://jfsi.ru/wp-content/uploads/2021/12/Обложка-ВЛН-—-4-англ-scaled.jpg 1772w" sizes="(max-width: 208px) 100vw, 208px" /></p>
<p>&nbsp;</p>
<p style="font-weight: 400;"><span style="color: #000000; font-size: 18pt;"><strong><span style="font-style: inherit; font-family: 'times new roman', times, serif;"><span style="font-style: inherit;">Review articles</span></span></strong></span></p>
<p><span style="color: #000000; font-family: 'times new roman', times, serif;"><strong><b>Podolskaia E. S.</b></strong></span><br />
<span style="font-family: 'times new roman', times, serif;"><strong><a class="row-title" href="https://jfsi.ru/en/4-4-2021-podolskaia/" aria-label="«Шкала природной пожарной опасности лесных экосистем И.С. Мелехова. Обзор современных российских методических подходов» (Изменить)"><b>REVIEW OF EXPERIENCE IN SOLVING THE TRANSPORT MODELING TASKS IN THE FORESTRY</b></a></strong></span></p>
<p><span style="color: #000000; font-family: 'times new roman', times, serif;"><strong><b>S. A. Ermolov</b></strong></span><br />
<span style="font-family: 'times new roman', times, serif;"><strong><a class="row-title" href="https://jfsi.ru/en/4-4-2021-ermolov/" aria-label="«Шкала природной пожарной опасности лесных экосистем И.С. Мелехова. Обзор современных российских методических подходов» (Изменить)"><b>APPROACHES TO THE ECOLOGICAL CLASSIFICATION OF EARTHWORMS. A REVIEW</b></a></strong></span></p>
<p><span style="color: #000000; font-family: 'times new roman', times, serif;"><strong><b>A. I. Kuznetsovа</b></strong></span><br />
<span style="font-family: 'times new roman', times, serif;"><strong><a class="row-title" href="https://jfsi.ru/en/4-4-2021-kuznetsov%d0%b0/" aria-label="«Шкала природной пожарной опасности лесных экосистем И.С. Мелехова. Обзор современных российских методических подходов» (Изменить)"><b>INFLUENCE OF VEGETATION ON SOIL CARBON STOCKS IN FORESTS (REVIEW)</b></a></strong></span></p>
<p>&nbsp;</p>
<p style="font-weight: 400;"><span style="color: #000000; font-size: 18pt;"><strong><span style="font-style: inherit; font-family: 'times new roman', times, serif;"><span style="font-style: inherit;">Original research</span></span></strong></span></p>
<p><span style="color: #000000; font-family: 'times new roman', times, serif;"><strong><b>E. A. Platonova, N. V. Afoshin, T. Yu. Djachkova</b></strong></span><br />
<span style="font-family: 'times new roman', times, serif;"><strong><a class="row-title" href="https://jfsi.ru/en/4-4-2021-platonova_et_al/" aria-label="«Шкала природной пожарной опасности лесных экосистем И.С. Мелехова. Обзор современных российских методических подходов» (Изменить)"><b>STATE OF <em>TILIA CORDATA</em> MILL. AND <em>ULMUS GLABRA</em> HUDS. COENOPOPULATIONS IN THE FORESTS OF PETROZAVODSKY URBAN OKRUG</b></a></strong></span></p>
<p>&nbsp;</p>
<p style="font-weight: 400;"><span style="color: #000000; font-size: 18pt;"><strong><span style="font-style: inherit; font-family: 'times new roman', times, serif;"><span style="font-style: inherit;">Comments</span></span></strong></span></p>
<p><span style="color: #000000; font-family: 'times new roman', times, serif;"><strong><b>Y. N. Gagarin</b></strong></span><br />
<span style="font-family: 'times new roman', times, serif;"><strong><a class="row-title" href="https://jfsi.ru/en/4-4-2021-gagarin/" aria-label="«Шкала природной пожарной опасности лесных экосистем И.С. Мелехова. Обзор современных российских методических подходов» (Изменить)"><b>SCIENTIFIC COMMENTARY ON THE DEVELOPMENT STRATEGY OF THE FOREST COMPLEX OF THE RUSSIAN FEDERATION UNTIL 2030</b></a></strong></span></p>
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		<title>Vol 4 (3), 2021</title>
		<link>https://jfsi.ru/en/4-3-2021/</link>
		
		<dc:creator><![CDATA[lena]]></dc:creator>
		<pubDate>Mon, 25 Oct 2021 17:37:31 +0000</pubDate>
				<category><![CDATA[Новости]]></category>
		<guid isPermaLink="false">https://jfsi.ru/?p=4490</guid>

					<description><![CDATA[DOI: 10.31509/2658-607x-2021-3 Review articles E. A. Ivanova TREE LITTER PRODUCTION AND DECOMPOSITION IN FOREST ECOSYSTEMS UNDER BACKGROUND CONDITIONS AND INDUSTRIAL AIR POLLUTION &#160; Original research E. V. Tikhonova, G. N. Tikhonov FOREST COVER MOSAICS&#46;&#46;&#46;]]></description>
										<content:encoded><![CDATA[<p style="text-align: center;"><span style="color: #000000; font-size: 14pt;"><strong><span style="font-family: 'times new roman', times, serif;">DOI: 10.31509/2658-607x-2021-3</span></strong></span></p>
<p style="text-align: center;"><a href="https://jfsi.ru/en/3-2021/"><img loading="lazy" class="aligncenter wp-image-4542 size-medium" src="https://jfsi.ru/wp-content/uploads/2021/10/Обложка-ВЛН-—-3-англ-208x300.jpg" alt="" width="208" height="300" srcset="https://jfsi.ru/wp-content/uploads/2021/10/Обложка-ВЛН-—-3-англ-208x300.jpg 208w, https://jfsi.ru/wp-content/uploads/2021/10/Обложка-ВЛН-—-3-англ-709x1024.jpg 709w, https://jfsi.ru/wp-content/uploads/2021/10/Обложка-ВЛН-—-3-англ-104x150.jpg 104w, https://jfsi.ru/wp-content/uploads/2021/10/Обложка-ВЛН-—-3-англ-768x1109.jpg 768w, https://jfsi.ru/wp-content/uploads/2021/10/Обложка-ВЛН-—-3-англ-1064x1536.jpg 1064w, https://jfsi.ru/wp-content/uploads/2021/10/Обложка-ВЛН-—-3-англ-1418x2048.jpg 1418w, https://jfsi.ru/wp-content/uploads/2021/10/Обложка-ВЛН-—-3-англ.jpg 1718w" sizes="(max-width: 208px) 100vw, 208px" /></a></p>
<p style="font-weight: 400;"><span style="color: #000000; font-size: 18pt;"><strong><span style="font-style: inherit; font-family: 'times new roman', times, serif;"><span style="font-style: inherit;">Review articles</span></span></strong></span></p>
<p><span style="color: #000000; font-family: 'times new roman', times, serif;"><strong>E. A. Ivanova</strong></span><br />
<a href="https://jfsi.ru/en/%d1%84%d0%be%d1%80%d0%bc%d0%b8%d1%80%d0%be%d0%b2%d0%b0%d0%bd%d0%b8%d0%b5-%d0%b8-%d1%80%d0%b0%d0%b7%d0%bb%d0%be%d0%b6%d0%b5%d0%bd%d0%b8%d0%b5-%d0%b4%d1%80%d0%b5%d0%b2%d0%b5%d1%81%d0%bd%d0%be%d0%b3/"><span style="font-family: 'times new roman', times, serif;"><strong>TREE LITTER PRODUCTION AND DECOMPOSITION IN FOREST ECOSYSTEMS UNDER BACKGROUND CONDITIONS AND INDUSTRIAL AIR POLLUTION</strong></span></a></p>
<p>&nbsp;</p>
<p style="font-weight: 400;"><span style="color: #000000; font-size: 18pt;"><strong><span style="font-style: inherit; font-family: 'times new roman', times, serif;"><span style="font-style: inherit;">Original research</span></span></strong></span></p>
<p><span style="color: #000000; font-family: 'times new roman', times, serif;"><strong>E. V. Tikhonova, G. N. Tikhonov</strong></span><br />
<a href="https://jfsi.ru/en/4-3-2021-tikhonova_tikhonov/"><span style="font-family: 'times new roman', times, serif;"><strong>FOREST COVER MOSAICS OF CONIFEROUS-DECIDUOUS FORESTS IN THE VALUEVSKY FOREST PARK</strong></span></a></p>
<p><span style="color: #000000; font-family: 'times new roman', times, serif;"><strong>A.A. Kolycheva, S. I. Chumachenko</strong></span><br />
<a href="https://jfsi.ru/en/4-3-2021-kolycheva_chumachenko/"><span style="font-family: 'times new roman', times, serif;"><strong>ESTIMATION OF THE YIELD OF WILD BERRIES TAKING INTO ACCOUNT THE LEVEL OF ILLUMINATION OF THE GROUND COVER BY SIMULATION METHODS</strong></span></a></p>
<p><span style="color: #000000; font-family: 'times new roman', times, serif;"><strong>V. G. Storozhenko</strong></span><br />
<a href="https://jfsi.ru/en/4-3-2021-storozhenko/"><span style="font-family: 'times new roman', times, serif;"><strong>SUCCESSION DYNAMICS OF NATIVE SPRUCE FORESTS OF DIFFERENT AGES IN EUROPEAN RUSSIA</strong></span></a></p>
<p style="font-weight: 400;"><span style="color: #000000; font-size: 18pt;"><strong><span style="font-style: inherit; font-family: 'times new roman', times, serif;"><span style="font-style: inherit;">Anniversaries</span></span></strong></span></p>
<p><span style="color: #000000; font-family: 'times new roman', times, serif;"><strong>V. V. Nefediev, A. V. Gornov</strong></span><br />
<a href="https://jfsi.ru/en/%d0%b0%d0%ba%d0%b0%d0%b4%d0%b5%d0%bc%d0%b8%d0%ba-%d1%80%d0%b0%d0%bd-%d0%b8%d1%81%d0%b0%d0%b5%d0%b2-%d0%b0%d0%bb%d0%b5%d0%ba%d1%81%d0%b0%d0%bd%d0%b4%d1%80-%d1%81%d0%b5%d1%80%d0%b3%d0%b5%d0%b5%d0%b2/"><span style="font-family: 'times new roman', times, serif;"><strong>ACADEMICIAN OF THE RAS ALEXANDER SERGEEVICH ISAEV — 90 YEARS ANNIVERSARY</strong></span></a><br />
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<span style="color: #000000; font-family: 'times new roman', times, serif;"><strong>E. S. Podolskaia</strong></span>
<span style="font-family: 'times new roman', times, serif;"><strong><a class="row-title" href="https://jfsi.ru/en/4-2-2021-podolskaia/" aria-label="«Шкала природной пожарной опасности лесных экосистем И.С. Мелехова. Обзор современных российских методических подходов» (Изменить)">REVIEW OF OPEN SOURCE QGIS FORESTRY PLUGINS</a></strong></span>

<span style="color: #000000; font-family: 'times new roman', times, serif;"><strong>A. P. Geraskina, D. N. Tebenkova, D. V. Ershov, E. V. Ruchinskaya, N. V. Sibirtseva, N.V. Lukina</strong></span>
<span style="font-family: 'times new roman', times, serif;"><strong><a class="row-title" href="https://jfsi.ru/en/4-2-2021-geraskina_et_al/" aria-label="«Шкала природной пожарной опасности лесных экосистем И.С. Мелехова. Обзор современных российских методических подходов» (Изменить)">WILDFIRES AS A FACTOR OF THE LOSS OF BIODIVERSITY AND FUNCTIONS OF FOREST ECOSYSTEMS</a></strong></span>

&nbsp;


<p style="font-weight: 400;"><span style="color: #000000; font-size: 18pt;"><strong><span style="font-style: inherit; font-family: 'times new roman', times, serif;"><span style="font-style: inherit;">Original research</span></span></strong></span></p>


<span style="color: #000000; font-family: 'times new roman', times, serif;"><strong>I. V. Glushkov, V. V. Lupachik, I. V. Zhuravleva, A. Yu. Yaroshenko, A. F. Komarova, M. A. Drozdovskaya, A. N. Drozdovskiy, A. V. Pilipenko, N. Yu. Barakova, M. Yu. Vasilieva, D. B. Koltsov, Yu. E. Zenkevitch, A. G. Zudkin, A. A. Andreeva</strong></span>
<span style="font-family: 'times new roman', times, serif;"><strong><a class="row-title" href="https://jfsi.ru/4-2-2021-glushkov_et_al/" aria-label="«Шкала природной пожарной опасности лесных экосистем И.С. Мелехова. Обзор современных российских методических подходов» (Изменить)">ASSESSMENT OF LANDSCAPE FIRES IN 2020 IN RUSSIA</a></strong></span>

<span style="color: #000000; font-family: 'times new roman', times, serif;"><strong>N.V. Baranovskiy, D. S. Menshikov</strong></span>
<span style="font-family: 'times new roman', times, serif;"><strong><a class="row-title" href="https://jfsi.ru/4-3-2021-baranovskiy_menshikov/" aria-label="«Шкала природной пожарной опасности лесных экосистем И.С. Мелехова. Обзор современных российских методических подходов» (Изменить)">MATHEMATICAL MODELING OF THE FOREST FIRE IMPACT ON THE BRANCH OF A CONIFEROUS TREE</a></strong></span>


<h2 style="font-weight: 400;"></h2>


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		<title>№2 2021</title>
		<link>https://jfsi.ru/en/4-2-2021/</link>
		
		<dc:creator><![CDATA[lena]]></dc:creator>
		<pubDate>Fri, 16 Jul 2021 19:13:13 +0000</pubDate>
				<category><![CDATA[Новости]]></category>
		<guid isPermaLink="false">https://jfsi.ru/?p=4285</guid>

					<description><![CDATA[DOI: 10.31509/2658-607x-2021-2 Thematic issue &#8220;Forest fires&#8221; Review articles A. S. Plotnikova SCALE OF NATURAL FIRE DANGER OF FOREST ECOSYSTEMS OF MELEKHOV I. S. OVERVIEW OF MODERN RUSSIAN METHODOLOGICAL APPROACHES E. S. Podolskaia REVIEW OF&#46;&#46;&#46;]]></description>
										<content:encoded><![CDATA[<p style="text-align: center;"><span style="color: #000000; font-size: 14pt;"><strong><span style="font-family: 'times new roman', times, serif;">DOI: 10.31509/2658-607x-2021-2</span></strong></span></p>
<p style="text-align: center;"><span style="color: #000000; font-size: 14pt;"><strong><span style="font-family: 'times new roman', times, serif;">Thematic issue &#8220;Forest fires&#8221;</span></strong></span></p>
<p><img loading="lazy" class="wp-image-4286 size-medium aligncenter" src="https://jfsi.ru/wp-content/uploads/2021/07/FSI_4-2_eng-208x300.jpg" alt="" width="208" height="300" srcset="https://jfsi.ru/wp-content/uploads/2021/07/FSI_4-2_eng-208x300.jpg 208w, https://jfsi.ru/wp-content/uploads/2021/07/FSI_4-2_eng-709x1024.jpg 709w, https://jfsi.ru/wp-content/uploads/2021/07/FSI_4-2_eng-104x150.jpg 104w, https://jfsi.ru/wp-content/uploads/2021/07/FSI_4-2_eng-768x1109.jpg 768w, https://jfsi.ru/wp-content/uploads/2021/07/FSI_4-2_eng-1063x1536.jpg 1063w, https://jfsi.ru/wp-content/uploads/2021/07/FSI_4-2_eng.jpg 1125w" sizes="(max-width: 208px) 100vw, 208px" /></p>
<p style="font-weight: 400;"><span style="color: #000000; font-size: 18pt;"><strong><span style="font-style: inherit; font-family: 'times new roman', times, serif;"><span style="font-style: inherit;">Review articles</span></span></strong></span></p>
<p><span style="color: #000000; font-family: 'times new roman', times, serif;"><strong>A. S. Plotnikova</strong></span><br />
<a href="https://jfsi.ru/en/4-2-2021-plotnikova/"><span style="font-family: 'times new roman', times, serif;"><strong>SCALE OF NATURAL FIRE DANGER OF FOREST ECOSYSTEMS OF MELEKHOV I. S. OVERVIEW OF MODERN RUSSIAN METHODOLOGICAL APPROACHES</strong></span></a></p>
<p><span style="color: #000000; font-family: 'times new roman', times, serif;"><strong>E. S. Podolskaia</strong></span><br />
<span style="font-family: 'times new roman', times, serif;"><strong><a class="row-title" href="https://jfsi.ru/en/4-2-2021-podolskaia/" aria-label="«Шкала природной пожарной опасности лесных экосистем И.С. Мелехова. Обзор современных российских методических подходов» (Изменить)">REVIEW OF OPEN SOURCE QGIS FORESTRY PLUGINS</a></strong></span></p>
<p><span style="color: #000000; font-family: 'times new roman', times, serif;"><strong>A. P. Geraskina, D. N. Tebenkova, D. V. Ershov, E. V. Ruchinskaya, N. V. Sibirtseva, N.V. Lukina</strong></span><br />
<span style="font-family: 'times new roman', times, serif;"><strong><a class="row-title" href="https://jfsi.ru/en/4-2-2021-geraskina_et_al/" aria-label="«Шкала природной пожарной опасности лесных экосистем И.С. Мелехова. Обзор современных российских методических подходов» (Изменить)">WILDFIRES AS A FACTOR OF THE LOSS OF BIODIVERSITY AND FUNCTIONS OF FOREST ECOSYSTEMS</a></strong></span></p>
<p>&nbsp;</p>
<p style="font-weight: 400;"><span style="color: #000000; font-size: 18pt;"><strong><span style="font-style: inherit; font-family: 'times new roman', times, serif;"><span style="font-style: inherit;">Original research</span></span></strong></span></p>
<p><span style="color: #000000; font-family: 'times new roman', times, serif;"><strong>I. V. Glushkov, V. V. Lupachik, I. V. Zhuravleva, A. Yu. Yaroshenko, A. F. Komarova, M. A. Drozdovskaya, A. N. Drozdovskiy, A. V. Pilipenko, N. Yu. Barakova, M. Yu. Vasilieva, D. B. Koltsov, Yu. E. Zenkevitch, A. G. Zudkin, A. A. Andreeva</strong></span><br />
<span style="font-family: 'times new roman', times, serif;"><strong><a class="row-title" href="https://jfsi.ru/4-2-2021-glushkov_et_al/" aria-label="«Шкала природной пожарной опасности лесных экосистем И.С. Мелехова. Обзор современных российских методических подходов» (Изменить)">ASSESSMENT OF LANDSCAPE FIRES IN 2020 IN RUSSIA</a></strong></span></p>
<p><span style="color: #000000; font-family: 'times new roman', times, serif;"><strong>N.V. Baranovskiy, D. S. Menshikov</strong></span><br />
<span style="font-family: 'times new roman', times, serif;"><strong><a class="row-title" href="https://jfsi.ru/4-3-2021-baranovskiy_menshikov/" aria-label="«Шкала природной пожарной опасности лесных экосистем И.С. Мелехова. Обзор современных российских методических подходов» (Изменить)">MATHEMATICAL MODELING OF THE FOREST FIRE IMPACT ON THE BRANCH OF A CONIFEROUS TREE</a></strong></span></p>
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		<title>Том 3, №4, 2020</title>
		<link>https://jfsi.ru/en/3-4-2020/</link>
		
		<dc:creator><![CDATA[lena]]></dc:creator>
		<pubDate>Mon, 21 Dec 2020 06:49:33 +0000</pubDate>
				<category><![CDATA[Новости]]></category>
		<guid isPermaLink="false">https://jfsi.ru/?p=3822</guid>

					<description><![CDATA[Review articles N.V. Lukina, A.P. Geraskina, A.V. Gornov, N.E. Shevchenko, A.V. Kuprin, T.I. Chernov, S.I. Chumachenko, V.N. Shanin, A.I. Kuznetsova, D.N. Tebenkova, M.V. Gornova Biodiversity and climate regulating functions of forests: current issues and&#46;&#46;&#46;]]></description>
										<content:encoded><![CDATA[<p><!--


<h2 style="text-align: center;"><span style="font-family: 'times new roman', times, serif;">Forthcoming</span></h2>


--></p>
<div id="attachment_3825" style="width: 222px" class="wp-caption aligncenter"><img aria-describedby="caption-attachment-3825" loading="lazy" class="size-medium wp-image-3825" src="https://jfsi.ru/wp-content/uploads/2020/12/JC_FSI_N4_2020_eng-212x300.jpg" alt="" width="212" height="300" srcset="https://jfsi.ru/wp-content/uploads/2020/12/JC_FSI_N4_2020_eng-212x300.jpg 212w, https://jfsi.ru/wp-content/uploads/2020/12/JC_FSI_N4_2020_eng-106x150.jpg 106w, https://jfsi.ru/wp-content/uploads/2020/12/JC_FSI_N4_2020_eng.jpg 707w" sizes="(max-width: 212px) 100vw, 212px" /><p id="caption-attachment-3825" class="wp-caption-text"><span style="color: #000000;"><strong><span style="font-family: 'times new roman', times, serif;">Vol 3 (4), 2020</span></strong></span></p></div>
<h2><strong><span style="font-family: 'times new roman', times, serif; color: #000000;">Review articles</span></strong></h2>
<p><span style="font-family: 'times new roman', times, serif; color: #000000;"><strong>N.V. Lukina, A.P. Geraskina, A.V. Gornov, N.E. Shevchenko, A.V. Kuprin, T.I. Chernov, S.I. Chumachenko, V.N. Shanin, A.I. Kuznetsova, D.N. Tebenkova, M.V. Gornova</strong></span><br />
<a href="https://jfsi.ru/en/3-4-2020-lukina_et_al/"><strong><span style="font-family: 'times new roman', times, serif;">Biodiversity and climate regulating functions of forests: current issues and prospects for research</span></strong></a></p>
<h2><span style="font-family: times new roman, times, serif; color: #000000;"><strong>Original research</strong></span></h2>
<p><span style="font-family: 'times new roman', times, serif; color: #000000;"><strong>S.V. Bobushkina, A.O. Senkov, D.H. Fayzulin</strong></span><br />
<span style="font-family: times new roman, times, serif;"><a href="https://jfsi.ru/en/3-4-2020-bobushkina_et_al/"><strong> Practice on growing of forest containerized seedlings applicable to the greenhouse complexes of the Arkhangelsk region</strong></a></span></p>
<p><span style="font-family: 'times new roman', times, serif; color: #000000;"><strong>A.S. Plotnikova, A.O. Kharitonova</strong></span><br />
<a href="https://jfsi.ru/en/3-4-2020-plotnikova_kharitonova/"><span style="font-family: times new roman, times, serif;"><strong>Web-Based GIS for mapping fire regimes of Pechoro-Ilych reserve and its surroundings</strong></span></a></p>
<p><span style="font-family: 'times new roman', times, serif; color: #000000;"><strong>T.Yu. Braslavskaya, E.V. Tikhonova, E.V. Basova, T.S. Prokazina</strong></span><br />
<a href="https://jfsi.ru/en/3-4-2020-braslavskaya_et_al/"><span style="font-family: times new roman, times, serif;"><strong>Development of database “North Eurasia forest vegetation” in Center for Forest Ecology and Productivity RAS</strong></span></a></p>
<p><span style="font-family: 'times new roman', times, serif; color: #000000;"><strong>E.V. Ruchinskaya, A.V. Gornov</strong></span><br />
<a href="https://jfsi.ru/en/3-4-2020-ruchinskaya_gornov/"><span style="font-family: times new roman, times, serif;"><strong>Influence of single trees on floristic diversity and population structure of rare plants species of steppe meadows</strong></span></a></p>
<h2><span style="font-family: times new roman, times, serif; color: #000000;"><strong>Short science articles</strong></span></h2>
<p><span style="font-family: 'times new roman', times, serif; color: #000000;"><strong>D.V. Ershov, E.N. Sochilova</strong></span><br />
<a href="https://jfsi.ru/en/3-4-2020-ershov_sochilova/"><strong><span style="font-family: 'times new roman', times, serif;">Assessment of direct pyrogenic carbon emissions in forests of Russia for 2020 according to remote monitoring data</span></strong></a></p>
<h2><span style="font-family: times new roman, times, serif; color: #000000;"><strong>Conferences chronicle</strong></span></h2>
<p><span style="font-family: 'times new roman', times, serif; color: #000000;"><strong>A.V. Gornov, A.P. Geraskina, A.S. Plotnikova</strong></span><br />
<a href="https://jfsi.ru/en/3-4-2020-gornov_et_al/"><strong><span style="font-family: 'times new roman', times, serif;">IV All-Russian scientific conference with international participation &#8220;SCIENTIFIC BASIS FOR SUSTAINABLE FOREST MANAGEMENT&#8221;</span></strong></a></p>
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