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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Mechanisms for a Record-Breaking Rainfall in the Coastal Metropolitan City of Guangzhou, China: Observation Analysis and Nested Very Large Eddy Simulation With the WRF Model
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Mechanisms for a Record-Breaking Rainfall in the Coastal Metropolitan City of Guangzhou, China: Observation Analysis and Nested Very Large Eddy Simulation With the WRF Model

机译:中国广州沿海大都市城市的录制降雨量:观察分析和WRF模型的嵌套非常大的涡流模拟

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摘要

Record-breaking rainfall of 524.1 mm in 24 hr occurred in the coastal metropolitan city of Guangzhou, China, during 6-7 May 2017 and caused devastating flooding. Observation analysis and a nested very large eddy simulation (VLES) with Weather Research and Forecasting (WRF) model were conducted to investigate various factors that contributed to the heavy rainfall, including synoptic weather pattern, topographic effects, cold pool, and urban effects. First, the warm and moist southerly flow in the lower troposphere over the trumpet-shaped topography of the Pearl River Delta continuously provided fuel for the development of the severe rainfall. Consequently, the southerly flow from the sea in the south strengthened with the development of the convection. Meanwhile, the precipitation-produced weak cold pool supported a stationary outflow boundary, where new convective cells were continuously initiated and drifted downstream. The interaction between the cold outflows and the warm moist southerly flows in the lower troposphere formed a back-building convective system, which produced local persistent heavy rainfall that lasted for more than 5 hr and reached record levels. Sensitivity experiments in which the urban area was removed from the model indicate that the urban forcing affected the timing and location of convective initiation and helped concentrate the maximum rain core. The nested WRF-LES successfully simulated this heavy rainfall, and the model's advantages are noted for forecasting such local severe weather.
机译:破纪录的524.1毫米降雨量在24小时发生在沿海大都市广州,中国,期间,2017年6-7月,造成毁灭性的洪水。观察分析和嵌套非常大涡模拟(VLES)与天气研究和预报(WRF)模型进行了研究,为暴雨贡献,包括天气天气模式,地形影响,冷水池,以及城市影响的各种因素。首先,在温暖和潮湿的南风在对流层低层流过珠三​​角不断提供燃料的喇叭口地形对强降水的发展。因此,南风从海上流动与对流的发展加强了南方。同时,产生沉淀,弱冷空气池支持的固定流出边界,在那里新的对流单体连续发起和漂流下游。冷外流和暖湿之间的相互作用南风流入形成的背面建设对流系统,其中产生的局部持续强降雨持续超过5小时,达到记录水平低对流层。其中从模型中取出市区灵敏度实验表明,城市强迫影响的时间和对流启动的位置,并帮助精矿最大雨核心。嵌套WRF-LES成功地模拟这种强降雨,该模型的优点是指出这种预测当地恶劣的天气。

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