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Impact of boundary layer processes on seasonal simulation of the East Asian summer monsoon using a Regional Climate Model

机译:区域气候模式对边界层过程对东亚夏季风季节模拟的影响

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摘要

In this study, an improved planetary boundary layer (PBL) scheme (YSU scheme) is implemented in a regional climate model (SNURCM) to rectify the systematic bias of the model with the MRF PBL scheme, and the impact of new PBL processes on the simulation of precipitation in the East Asian summer monsoon (EASM) is investigated through regional climate simulations with the MRF and the YSU schemes for the summer of 1998 when extreme floods occurred over East Asia. Compared to the experiment with the MRF scheme that shows excessive monsoon precipitation, particularly over the ocean, the experiment with the YSU scheme improves the seasonal mean precipitation as well as associated large-scale circulations. The temporal progression of the monsoon precipitation and 500 hPa geopotential height, and vertical structure are also improved by the revised scheme. The MRF scheme simulates more convective precipitation over the ocean than the YSU scheme, since excessive PBL mixing results in the positive feedback between convective precipitation and latent heat flux at the sea surface. The MRF scheme also simulates more non-convective precipitation over the ocean due to distorted large-scale circulations and excessive PBL mixing. In the experiment with the YSU scheme, the simulated precipitation over the ocean is in good agreement with the observation, since the positive feedback is relatively reduced and large-scale features are reasonably reproduced due to decreased PBL mixing.
机译:在这项研究中,在区域气候模型(SNURCM)中实施了改进的行星边界层(PBL)方案(YSU方案),以利用MRF PBL方案纠正该模型的系统偏差,以及新的PBL流程对大气层的影响通过使用MRF和YSU方案对1998年夏季东亚发生极端洪水的区域气候模拟,对东亚夏季风(EASM)的降水模拟进行了研究。与采用MRF方案的实验相比,该方案显示出季风降水过多,特别是在海洋上,而采用YSU方案的实验改善了季节性平均降水以及相关的大规模环流。修订后的方案也改善了季风降水和500 hPa地势高度的时间进程以及垂直结构。 MRF方案比YSU方案模拟了更多的海洋对流降水,因为过多的PBL混合会导致对流降水和海面潜热通量之间的正反馈。 MRF方案还模拟了由于扭曲的大规模环流和过多的PBL混合造成的海洋上更多的非对流降水。在YSU方案的实验中,由于减少了PBL的混合,正反馈相对减少,并且合理再现了大尺度特征,因此模拟的海洋降水与观测结果吻合良好。

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