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The impact of anthropogenic land use and land cover change on regional climate extremes

机译:人为土地利用和土地覆盖变化对区域极端气候的影响

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摘要

Land surface processes modulate the severity of heat waves, droughts, and other extreme events. However, models show contrasting effects of land surface changes on extreme temperatures. Here, we use an earth system model from the Geophysical Fluid Dynamics Laboratory to investigate regional impacts of land use and land cover change on combined extremes of temperature and humidity, namely aridity and moist enthalpy, quantities central to human physiological experience of near-surface climate. The model’s near-surface temperature response to deforestation is consistent with recent observations, and conversion of mid-latitude natural forests to cropland and pastures is accompanied by an increase in the occurrence of hot-dry summers from once-in-a-decade to every 2–3 years. In the tropics, long time-scale oceanic variability precludes determination of how much of a small, but significant, increase in moist enthalpy throughout the year stems from the model’s novel representation of historical patterns of wood harvesting, shifting cultivation, and regrowth of secondary vegetation and how much is forced by internal variability within the tropical oceans.
机译:地表过程调节热浪,干旱和其他极端事件的严重性。然而,模型显示出地表变化对极端温度的反作用。在这里,我们使用地球物理流体动力学实验室的地球系统模型来研究土地利用和土地覆盖变化对温度和湿度的极端组合(即干旱和湿焓)的区域影响,这是人类近地表气候生理经验的中心。该模型对森林砍伐的近地表温度响应与最近的观测结果一致,并且中纬度天然林向农田和牧场的转化伴随着从每十年一次到每年每十年一次的炎热干燥夏季的增加。 2–3年。在热带地区,长时间尺度的海洋变化性使得无法确定全年湿热焓的小幅但显着增加是源于该模型对木材采伐,转移种植和次生植被的历史格局的新颖表现以及热带海洋内部变率强迫了多少。

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