扰动(地质)
气候变化
地理
风暴
环境科学
全球变暖
森林恢复
栖息地
森林经营
全球变暖的影响
森林结构
农林复合经营
森林生态学
生态学
气候学
环境资源管理
全球变化
森林资源清查
生态林业
自然地理学
环境保护
作者
Marc Grünig,Werner Rammer,Cornelius Senf,Katharina Albrich,Frédéric André,Andrey L. D. Augustynczik,M. Baumann,Friedrich J. Bohn,M. Bouwman,Harald Bugmann,Alessio Collalti,Irina Cristal,Daniela Dalmonech,Francois De Coligny,Laura Dobor,Christina Dollinger,Josep María Espelta,David I. Forrester,Jordi Garcia-Gonzalo,José Ramón González-Olabarria
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2026-03-05
卷期号:391 (6789): eadx6329-eadx6329
被引量:7
标识
DOI:10.1126/science.adx6329
摘要
Wildfires, insect outbreaks, and storms cause large pulses of tree mortality. Climate change amplifies these forest disturbances, yet their future magnitude and extent remain uncertain. Here, we simulated future forest disturbance regimes at 100-meter resolution across Europe using a deep learning-based simulation framework. Our results show that forest disturbances will continue to increase throughout the 21st century, with disturbed areas more than doubling relative to the recent past under an unabated continuation of climate change. Wildfires are the main agent driving future disturbance change. Changing disturbances result in an increase in young forests, substantially altering Europe's forest demography. Because of their profound implications for forest carbon storage and the habitat value of forest ecosystems, disturbances should be a priority of forest policy and management.
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