首页> 外文期刊>Hydrological Research Letters >Projection of impacts of climate change on windthrows and evaluation of potential adaptation measures in forest management: A case study from empirical modelling of windthrows in Hokkaido, Japan, by Typhoon Songda (2004)
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Projection of impacts of climate change on windthrows and evaluation of potential adaptation measures in forest management: A case study from empirical modelling of windthrows in Hokkaido, Japan, by Typhoon Songda (2004)

机译:气候变化对风灾的影响预测和森林管理中潜在适应措施的评估:以日本北海道风灾的经验模型为例,台风颂达(2004年)

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A windthrow refers to the uprooting and overthrowing of trees by the wind. Typhoons are a major cause of windthrows in Japan and are predicted to intensify under global warming. This study aimed to estimate the impact of climate change on windthrows and evaluate possible adaptation measures for sustainable forest management. We incorporated Typhoon Songda (2004) simulation experiments under current and pseudo-global warming (2075–2099, RCP 8.5 scenario) conditions with windthrow modelling in four natural and four artificial ( Abies sachalinensis , Pinaceae) forests of Hokkaido. Unexpectedly, pseudo-global warming conditions decreased windthrow probabilities compared with current conditions for both forest types, presumably because wind speeds of the simulated typhoon weakened in Japan’s high-latitude regions. Our results indicate that reconversion of artificial forests into natural forests largely decreased windthrow probability, providing a potential adaptation measure for improved forest management. To fully understand the range of climate-change effects on windthrow in Japan, future studies should use different climate scenarios and data from other typhoons, geographical regions, and forest types.
机译:风是指树木被风连根拔起。台风是日本引发大风的主要原因,预计在全球变暖的情况下台风会加剧。这项研究旨在评估气候变化对风灾的影响,并评估可持续森林管理的可能适应措施。我们在北海道的四个天然森林和四个人工森林(萨博林,松科)中,在当前和伪全球变暖(2075-2099,RCP 8.5情景)条件下,利用风速模型将台风松达(2004年)模拟实验纳入其中。出乎意料的是,伪全球变暖条件与两种森林类型的当前条件相比,都降低了抛风的可能性,这大概是因为模拟的台风在日本的高纬度地区减弱了。我们的结果表明,人工林向天然林的转化大大降低了风吹的可能性,为改善森林管理提供了潜在的适应措施。为了充分了解气候变化对日本风灾的影响范围,未来的研究应使用其他台风,地理区域和森林类型的不同气候情景和数据。

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