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Circulation responses to regional aerosol climate forcing in summer over East Asia

机译:东亚夏季对区域气溶胶气候强迫的循环响应

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摘要

For East Asia, circulation responses to anthropogenic aerosol radiative forcing dominate aerosol-precipitation interactions. To gain insights, this study analyzed CESM simulated circulation changes related to the north drought and south flood' pattern caused by aerosol increases between two cases. One case was driven by the year-1850 global emission inventory, whereas the other used identical emissions for all regions except East Asia where anthropogenic emissions of aerosols and precursors of the year-2000 were imposed. Results show that the cooling caused by increased aerosols, which peaks at the middle latitudes, induces two intervened anomalous circulations in the troposphere. Near the surface, the increased land pressure weakens the southerlies and reduces the moisture transport for the entire eastern China. Meanwhile, in the free troposphere, the anomalous circulation exhibits remarkable meridional variations. While convergence occurs over 25 degrees-45 degrees N which partially compensates the decrease of moisture transport from lower levels, divergence develops over regions to the north which enhances the moisture deficiency. In addition, the southward shift of the jet stream stimulates anomalous rising and sinking motions over the south and north of 32 degrees N. The combination of these changes leads to precipitation increase in the Yangtze River Valley but decrease over North China.
机译:对于东亚,对人为气溶胶辐射强迫的循环响应主导了气溶胶-降水相互作用。为了获得真知灼见,本研究分析了由CESM模拟的与两个案例之间的气溶胶增加引起的与北干旱和南洪水模式有关的环流变化。一个案例是由1850年全球排放量清单驱动的,而另一案例是对除东亚以外的所有地区使用相同的排放量,东亚对2000年的人为排放的气溶胶和前驱物实行了强制性排放。结果表明,由气溶胶增加引起的降温在中纬度达到顶峰,在对流层中引起了两次介入的异常循环。在地表附近,升高的土地压力削弱了南方,并减少了整个中国东部的水分输送。同时,在对流层中,异常环流表现出明显的子午线变化。虽然会聚在25度至45度N上发生,这部分补偿了水分从较低水平的减少,但在北部地区却出现了发散,这加剧了水分不足。此外,喷流的南移刺激了北纬32度以南和北部的异常上升和下沉运动。这些变化的结合导致长江流域的降水增加,而华北的降水减少。

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