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Numerical simulation of topography effects on the '00.7' severe rainfall in Beijing

机译:地形对北京“ 00.7”强降雨影响的数值模拟

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摘要

In an effort to study the severe rainfall event of 4—5th July 2000 in Beijing (with 24h accumulated precipitation of 240 mm), we perform numerical simulations to investigate this event using the MM5v3.6 model. The model is initialized with the MM5/ WRF 3DVAR analysis, which incorporates the ground-based GPS precipitable water vapor, automatic and conventional meteorological observations in its assimilation step. For 24 h accumulated precipitation forecast, the threat scores are 0.72, 0.76, 0.67 and0.63, for thresholds of 1, 5, 10, and 20 mm, respectively. Holding other factors unchanged, sensitivity experiments were conducted with different topographic resolutions of 110, 50 and 3.7 km to investigate the topographic effects on precipitation over the Beijing area. In these sensitivity experiments, we attempt to preserve the realistic orographic distribution in the model topography under the condition of keeping the dynamic-thermodynamic consistency of the initial model atmosphere to the extent possible. Results indicate that the unique topographic distribution and variations in the Beijing area play an important role in determining the location, distribution and intensity of heavy precipitation.
机译:为了研究2000年7月4日至5日北京的强降雨事件(24小时累积降水量为240 mm),我们使用MM5v3.6模型进行了数值模拟,以调查该事件。该模型使用MM5 / WRF 3DVAR分析进行初始化,该分析在同化步骤中结合了地面GPS可沉淀的水蒸气,自动和常规气象观测。对于24小时的累积降水预测,对于1、5、10和20 mm的阈值,威胁得分分别为0.72、0.76、0.67和0.63。在保持其他因素不变的情况下,以110、50和3.7 km的不同地形分辨率进行了敏感性实验,以研究地形对北京地区降水的影响。在这些敏感性实验中,我们尝试在尽可能保持初始模型大气的动态-热力学一致性的条件下,将实际地形分布保留在模型地形中。结果表明,北京地区独特的地形分布和变化对确定强降水的位置,分布和强度起着重要作用。

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