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Effect of Spatial Resolution and Cumulus Parameterization on Simulated Precipitation over South Asia

机译:空间分辨率和积云参数化对南亚模拟降水的影响

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References(35) Supplementary materials(1) This paper evaluates the ability of a regional-scale climate model to simulate precipitation over the South Asian tropical region. Experiments were conducted using three different spatial resolutions, with and without cumulus parameterization (CP), to assess the influence of horizontal mesh size and the CP on regional-scale precipitation. The experiments that used a finer mesh size but no CP improved the spatial distribution of monthly precipitation relative to that in the experiments based on a coarser spatial resolution. Meanwhile, the impact of horizontal mesh size was much less in the experiments that included the CP because an overestimation of precipitation caused by the CP strongly affected the simulation accuracy in these experiments. Regional differences in diurnal variations in precipitation intensity and frequency were captured reasonably well in the pre-monsoon season regardless of the spatial resolution, and both with and without the CP. In contrast, the diurnal characteristics of precipitation were difficult to simulate during the mature monsoon season. During both seasons, those experiments that incorporated the CP tended to predicted a continuous weak precipitation due to the excessive release of convective instability; accordingly, precipitation intensity was weaker, and precipitation frequency greater than in those experiments that did not use the CP.
机译:参考文献(35)补充材料(1)本文评估了区域规模气候模型模拟南亚热带地区降水的能力。使用三种不同的空间分辨率进行实验,随着巨大的参数化(CP),以评估水平网格尺寸和CP对区域级沉淀的影响。使用更精细的网格尺寸但没有CP的实验改善了基于较粗糙的空间分辨率在实验中的月度降水的空间分布。同时,在包括CP的实验中,水平网格尺寸的影响远低得多,因为CP引起的降水高估强烈影响这些实验中的模拟精度。无论空间分辨率如何,在季风季节都有很好地捕获降水强度和频率的区域差异,无论是空间分辨率,还有和没有CP。相比之下,在成熟的季风季节期间难以模拟沉淀的昼夜特征。在两个季节期间,由于对流不稳定的过度释放,那些将CP的实验倾向于预测连续弱沉淀;因此,降水强度较弱,降水频率大于未使用CP的那些实验中的沉淀频率。

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