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Synergy between small- and large-scale feedbacks of vegetation on the water cycle

机译:水循环中植被的小规模和大规模反馈之间的协同作用

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摘要

Predictions of the effects of climate change on the extent of forests, savannas and deserts are usually based on simple response models derived from actual vegetation distributions. In this review, we show two major problems with the implicitly assumed straightforward cause-effect relationship. Firstly, several studies suggest that vegetation itself may have considerable effects on regional climate implying a positive feedback, which can potentially lead to large-scale hysteresis. Secondly, vegetation ecologists have found that effects of plants on microclimate and soils can cause a microscale positive feedback, implying that critical precipitation conditions for colonization of a site may differ from those for disappearance from that site. We argue that it is important to integrate these nonlinearities at disparate scales in models to produce more realistic predictions of potential effects of climate change and deforestation.
机译:对气候变化对森林,稀树草原和沙漠范围的影响的预测通常基于基于实际植被分布的简单响应模型。在这篇综述中,我们展示了隐式假定的直接因果关系的两个主要问题。首先,多项研究表明,植被本身可能会对区域气候产生相当大的影响,这意味着正反馈,这有可能导致大规模的滞后现象。其次,植被生态学家发现,植物对微气候和土壤的影响会引起微观的正反馈,这意味着该地点定居的关键降水条件可能与该地点消失的关键降水条件不同。我们认为重要的是将这些不同程度的非线性因素整合到模型中,以产生对气候变化和森林砍伐的潜在影响的更现实的预测。

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