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首页> 外文期刊>Global change biology >Vegetation cover-another dominant factor in determining global water resources in forested regions
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Vegetation cover-another dominant factor in determining global water resources in forested regions

机译:植被覆盖 - 在森林地区确定全球水资源的另一个主导因素

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摘要

Forested catchments provide critically important water resources. Due to dramatic global forest change over the past decades, the importance of including forest or vegetation change in the assessment of water resources under climate change has been highly recognized by Intergovernmental Panelon Climate Change (IPCC); however, this importance has not yet been examined quantitatively across the globe. Here, we used four remote sensing-based indices to represent changes in vegetation cover in forest-dominated regions, and then applied them to widely used models: the Fuh model and the Choudhury-Yang model to assess relative contributions of vegetation and climate change to annual runoff variations from 2000 to 2011 in forested landscape (forest coverage &30%) across the globe. Our simulations show that the global average variation in annual runoff due to change in vegetation cover is 30.7% +/- 22.5% with the rest attributed to climate change. Large annual runoff variation in response to vegetation change is found in tropical and boreal forests due to greater forest losses. Our simulations also demonstrate both offsetting and additive effects of vegetation cover and climate in determining water resource change. We conclude that vegetation cover change must be included in any global models for assessing global water resource change under climate change in forest-dominant areas.
机译:森林集水区提供了重点重要的水资源。由于过去几十年来的全球森林变化戏剧性,在气候变化下,在气候变化下评估了森林或植被变化的重要性由政府间面板气候变化(IPCC)高度认可;然而,这一重要性尚未在全球范围内定量检查。在这里,我们使用了四个基于遥感的索引来表示森林主导地区植被覆盖的变化,然后将它们应用于广泛使用的模型:富豪模型和Choudhury-yang模型评估植被和气候变化的相对贡献全球森林景观(森林覆盖率& 30%)从2000年到2011年的年度径流变化。我们的模拟表明,由于植被覆盖的变化导致的全球平均水平差异为30.7%+/-22.5%,其余部分归因于气候变化。由于森林损失更大,在热带和北方林中发现了较大的年径流变化。我们的模拟还展示了植被覆盖和气候在确定水资源变化时的偏移和添加剂效应。我们得出结论,植被覆盖变化必须包括在任何全球模型中,用于评估森林 - 主导地区气候变化下的全球水资源变化。

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