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Intercomparison of Precipitation Simulated by Regional Climate Models over East Asia in 1997 and 1998

机译:1997年和1998年东亚区域气候模式模拟的降水比对

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Regional climate simulations in Asia from May 1997 to August 1998 were performed using the Seoul National University regional climate model (SNURCM) and Iowa State University regional climate model (ALT.MM5/LSM), which were developed by coupling the NCAR/Land Surface Model (LSM) and the Mesoscale Model (MM5). However, for physical processes of precipitation, the SNURCM used the Grell scheme for the convective parameterization scheme (CPS) and the simple ice scheme for the explicit moisture scheme (EMS), while the ALT.MM5/LSM used the Betts-Miller scheme for CPS and the mixed phase scheme for EMS.rnThe simulated precipitation patterns and amounts over East Asia for the extreme climatic summer in 1997 (relative drought conditions) and 1998 (relative flood conditions) were especially focused upon. The ALT.MM5/LSM simulated more precipitation than was observed in 1997 due to more moisture and cloud water in the lower levels, despite weak upward motion. In the SNURCM, strong upward motion resulted in more precipitation than that was observed in 1998, with more moisture and cloud water in the middle levels. In the ALT.MM5/LSM, weak upward motion, unchanged moisture in the lower troposphere, and the decrease in latent heat flux at the surface increased convective precipitation only by 3% for the 1998 summer event. In the SNURCM, strong upward motion, the increase in moisture in the lower troposphere, and the increase in latent heat flux at the surface increased convective precipitation by 48% for the summer of 1998. The main differences between both simulations were moisture availability and horizontal momentum transport in the lower troposphere, which were also strongly influenced by large-scale forcing.
机译:使用首尔国立大学地区气候模型(SNURCM)和爱荷华州立大学地区气候模型(ALT.MM5 / LSM)进行了1997年5月至1998年8月亚洲地区的气候模拟,这是通过结合NCAR /地表模型开发的(LSM)和中尺度模型(MM5)。但是,对于降水的物理过程,SNURCM将Grell方案用于对流参数化方案(CPS),将简单的冰方案用于显式水分方案(EMS),而ALT.MM5 / LSM则将Betts-Miller方案用于降水。 CPS和EMS的混合阶段方案。rn特别关注了1997年(相对干旱条件)和1998年(相对洪水条件)极端气候夏季东亚的模拟降水模式和降水量。 ALT.MM5 / LSM模拟的降水量比1997年观察到的多,这是因为尽管较低的向上运动,但较低水平的水分和云水含量较高,尽管如此。在SNURCM中,强烈的向上运动导致的降水比1998年观察到的多,而中层则有更多的水分和云水。在ALT.MM5 / LSM中,向上运动较弱,对流层下部的水分不变,并且表面的潜热通量减少,对1998年夏季事件而言,对流降水仅增加了3%。在SNURCM中,1998年夏季强烈的向上运动,对流层下部的水分增加以及地表的潜热通量增加使对流降水增加了48%。这两个模拟之间的主要区别在于水分的可利用性和水平对流层下部的动量传输,也受到大规模强迫的强烈影响。

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