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A deforestation-induced tipping point for the South American monsoon system

机译:森林砍伐引起的南美季风转折点

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摘要

The Amazon rainforest has been proposed as a tipping element of the earth system, with the possibility of a dieback of the entire ecosystem due to deforestation only of parts of the rainforest. Possible physical mechanisms behind such a transition are still subject to ongoing debates. Here, we use a specifically designed model to analyse the nonlinear couplings between the Amazon rainforest and the atmospheric moisture transport from the Atlantic to the South American continent. These couplings are associated with a westward cascade of precipitation and evapotranspiration across the Amazon. We investigate impacts of deforestation on the South American monsoonal circulation with particular focus on a previously neglected positive feedback related to condensational latent heating over the rainforest, which strongly enhances atmospheric moisture inflow from the Atlantic. Our results indicate the existence of a tipping point. In our model setup, crossing the tipping point causes precipitation reductions of up to 40% in non-deforested parts of the western Amazon and regions further downstream. The responsible mechanism is the breakdown of the aforementioned feedback, which occurs when deforestation reduces transpiration to a point where the available atmospheric moisture does not suffice anymore to release the latent heat needed to maintain the feedback.
机译:有人提出将亚马逊雨林作为地球系统的一个引爆要素,由于仅部分雨林被砍伐,整个生态系统就有可能倒退。这种过渡背后的可能的物理机制仍在进行中。在这里,我们使用专门设计的模型来分析亚马逊雨林与从大西洋到南美大陆的大气水分传输之间的非线性耦合。这些耦合与整个亚马逊河的西部降水和蒸散作用有关。我们调查森林砍伐对南美季风循环的影响,尤其关注先前被忽视的与雨林凝结潜热有关的积极反馈,这强烈增强了大西洋中的大气水分流入。我们的结果表明存在临界点。在我们的模型设置中,越过临界点会使亚马逊西部西部和下游地区未砍伐森林的地区降水减少多达40%。负责任的机制是上述反馈的分解,当森林砍伐使蒸腾作用降低到可用大气水分不再足以释放保持反馈所需的潜热的程度时,就会发生分解。

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