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Mid-twenty-first century climate change in the Central United States. Part Ⅱ: Climate change processes

机译:二十一世纪中叶美国中部的气候变化。第二部分:气候变化过程

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Ensemble regional model simulations over the central US with 30-km resolution are analyzed to investigate the physical processes of projected precipitation changes in the mid-twenty-first century under greenhouse gas forcing. An atmospheric moisture balance is constructed, and changes in the diurnal cycle are evaluated. Wetter conditions over the central US in April and May occur most strongly in the afternoon and evening, supported primarily by moisture convergence by transient eddy activity, indicating enhanced daytime convection. In June, increased rainfall over the northern Great Plains is strongest from 0000 to 0600 LT. It is supported by positive changes in stationary meridional moisture convergence related to a strengthening of the GPLLJ accompanied by an intensification of the western extension of the North Atlantic subtropical high. In the Midwest, decreased rainfall is strongest at 1500 LT and 0000 LT. Both a suppression of daytime convection as well as changes in the zonal flow in the GPLLJ exit region are important. Future drying over the northern Great Plains in summer is triggered by weakened daytime convection, and persists throughout August and September when a deficit in soil moisture develops and land-atmosphere feedbacks become increasingly important.
机译:对美国中部30公里分辨率的整体区域模型模拟进行了分析,以研究二十一世纪中叶在温室气体强迫下预计的降水变化的物理过程。建立了大气湿度平衡,并评估了昼夜循环的变化。美国中部地区4月和5月的较湿状况最主要发生在下午和晚上,这主要是由于短暂的涡流活动引起的水分汇聚,表明白天的对流作用增强。 6月,从0000到0600 LT,大平原北部的降雨量增加最多。与GPLLJ的加强有关的静止子午水分汇聚的积极变化以及北大西洋副热带高压向西延伸的加剧都为这一现象提供了支持。在中西部地区,降雨量最大的是1500 LT和0000 LT。抑制白天的对流以及GPLLJ出口区域的纬向流量变化都很重要。日间对流减弱将导致夏季大平原北部未来的干旱,并持续到整个八月和九月,这时土壤水分不足,土地-大气反馈变得越来越重要。

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