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首页> 外文期刊>Annals of the New York Academy of Sciences >Changes in South American hydrodimate under projected Amazonian deforestation
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Changes in South American hydrodimate under projected Amazonian deforestation

机译:预计亚马逊森林砍伐下南美水化的变化

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摘要

Continued deforestation in the Amazon forest can alter the subsurface/surface and atmospheric branches of the hydrologic cycle. The sign and magnitude of these changes depend on the complex interactions between the water, energy, and momentum budgets. To understand these changes, we use the weather research and forecasting (WRF) model with improved representation of groundwater dynamics and the added feature of Amazonian moisture tracers. The control simulation uses moderate resolution imaging spectroradiometer (MODIS) based observations of land use, and the deforestation simulations use a "business-as-usual" scenario projected for 2040-2050. Our results show that deforestation leads to changes that are seasonally very different. During the dry season, deforestation results in increased albedo and less available net radiation. This change, together with reduced leaf area, results in decreased evapotranspiration (ET), less atmospheric moisture of Amazonian origin, and an increase in temperature. However, we find no changes in precipitation over the basin. Conversely, during the wet season, surface winds increase significantly due to decreased surface roughness. Vapor transport increases throughout the deforested region and leads to an increase in easterly moisture export, and significant decrease in precipitation within the deforested regions of Eastern Amazon. Contrary to expectations, the moisture tracers in WRF show no evidence that precipitation decreases are due to recycling or changes in stability.
机译:亚马逊森林的持续砍伐砍伐可以改变水文循环的地下/表面和大气分支。这些变化的标志和幅度取决于水,能量和动量预算之间的复杂相互作用。要了解这些变化,我们使用具有改进的地下水动力学表示的天气研究和预测(WRF)模型以及亚马逊水分示踪剂的附加功能。控制仿真采用基于中等分辨率的成像光谱辐射计(MODIS)的土地利用观察,森林砍伐仿真使用2040-2050预计的“业务上”方案。我们的结果表明,森林砍伐导致季节性差异的变化。在旱季期间,森林砍伐导致玻璃玻璃和较少的可用净辐射增加。这种变化与降低的叶面积一起导致蒸发蒸腾(ET),亚马逊源性较少的大气水分,以及温度的增加。然而,我们发现盆地上的降水变动。相反,在潮湿的季节,由于表面粗糙度降低,表面风显着增加。蒸汽运输在整个森林砍伐地区增加,并导致东部水分出口的增加,亚马逊东部森林地区的降水量显着下降。与期望相反,WRF中的水分示踪显示没有证据表明降水降低是由于循环或稳定性的变化。

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