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Climate response to Amazon forest replacement by heterogeneous crop cover

机译:异类作物覆盖对亚马逊森林置换的气候响应

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摘要

Previous modeling studies with atmospheric general circulation models and basic land surface schemes to balance energy and water budgets have shown that by removing the natural vegetation over the Amazon, the region's climate becomes warmer and drier. In this study we use a fully coupled Earth system model and replace tropical forests by a distribution of six common tropical crops with variable planting dates, physiological parameters and irrigation. There is still general agreement with previous studies as areal averages show a warmer (+1.4 K) and drier (-0.35mmday(-1)) climate. Using an interactive crop model with a realistic crop distribution shows that regions of vegetation change experience different responses dependent upon the initial tree coverage and whether the replacement vegetation is irrigated, with seasonal changes synchronized to the cropping season. Areas with initial tree coverage greater than 80% show an increase in coupling with the atmosphere after deforestation, suggesting land use change could heighten sensitivity to climate anomalies, while irrigation acts to dampen coupling with the atmosphere.
机译:先前使用大气一般环流模型和基本的地表方案来平衡能源和水预算的建模研究表明,通过去除亚马逊河上的自然植被,该地区的气候变得越来越干燥。在这项研究中,我们使用完全耦合的地球系统模型,并通过分配六种常见热带作物的种植日期,生理参数和灌溉来替代热带森林。以前的研究仍普遍达成共识,因为平均面积显示较温暖(+1.4 K)和较干燥(-0.35mmday(-1))的气候。使用具有现实作物分布的交互式作物模型显示,植被变化区域将经历不同的响应,具体取决于初始树木覆盖率以及是否灌溉了替代植被,并且季节变化与种植季节同步。原始树木覆盖率大于80%的区域在森林砍伐后显示出与大气的耦合增加,这表明土地用途的变化可以提高对气候异常的敏感性,而灌溉则起到抑制与大气耦合的作用。

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