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Budget Analyses of a Record-Breaking Rainfall Event in the Coastal Metropolitan City of Guangzhou, China

机译:中国广州沿海大都市城市中央城市的预算分析

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To investigate the mechanisms for the record-breaking rainfall in the coastal metropolitan city of Guangzhou, China during 6-7 May 2017, budget analyses of advection and source/sink terms of the water vapor, potential temperature, and vertical momentum equations were conducted using the model output of a nested very large eddy simulation with the Weather Research and Forecasting model. Results show that the warm and moist air flows from the south and east onshore in the lower troposphere provided the main moisture source for the heavy rainfall. The structure of vertical velocity and hydrometeors (low-echo centroid structure), in which the heavy rainfall was separated from the low-level updraft, was favorable for the formation and maintenance of a heavy precipitation rate. The removal of the heat due to the advection (cooling tendency) in the upper troposphere increased the convective available potential energy of parcels rising from the lower troposphere, maintaining the development of updrafts. Although the total buoyancy forcing was the main contribution term for maintaining the updrafts, total dynamic acceleration played an important role in the vertical acceleration below the maximum vertical velocity core. In particular, the nonlinear dynamic perturbation pressure gradient force in the lower troposphere induced by the rotations aloft maintained the strong updrafts.
机译:为了调查中国沿海大都市广州市沿海大都市城市的录制降雨量,2017年5月6日至7日,水蒸气,潜在温度和垂直动量方程的平流和源/水槽术语的预算分析具有天气研究和预测模型的嵌套非常大涡模拟模型输出。结果表明,南方对流层南部和东部的温暖和潮湿的空气流量为大雨的主要湿度来源。垂直速度和水液(低回波质心结构)的结构,其中大雨降雨与低水平上升流分离,有利于形成和维持重度沉淀率。上层对流层中的平流(冷却趋势)引起的热量增加了从较低的对流层升高的包裹的对流可用潜在能量,保持上升的发展。虽然总浮力强制是维持上升过程的主要贡献期,但总动态加速度在低于最大垂直速度核心的垂直加速度中发挥着重要作用。特别地,由转动诱导的较低的对流层中的非线性动态扰动压力梯度力保持较强的上升。

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