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A New Method to Diagnose Cyclone-Cyclone Interaction and Its Influences on Precipitation

机译:一种诊断旋风式旋风相互作用及其对沉淀的影响的新方法

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Unlike the classical point vortex model, a new method is developed to extract flows induced not only by vorticity but also by divergence in a well-defined vortex core area of a cyclone. This new method is applied to diagnosing the interactions of three midlatitude cyclones (called A, B, and C) that account for a missed summer severe rainfall forecast, in which the daily precipitation predicted by the Canadian operational model is an order of magnitude smaller than the rain gauge and radar measurements. In this event, cyclone B, responsible for the severe rainfall occurrence, was advected largely by flows induced by two neighboring cyclones: A and C to the west and east, respectively. This work attempts to assess whether and to what degree the vertical tilt of the observed cyclone versus that of the forecast cyclone B is caused by advections of the environmental flows (including A- and C-induced flows) at 500 and 1000 hPa. Results show that the observed cyclone B was advected mainly by the cyclone A-induced flow at 500 hPa into a vertically tilted structure that was northwestward against the vertical shear of the environmental flow and thus favorable for upward motion and cyclone intensification around the time of severe rainfall. However, the forecast cyclone B was advected largely by the cyclone A-induced flow at 500 hPa and the cyclone C-induced flow at 1000 hPa into an increasingly northward-tilted structure that was along the vertical shear of the environmental flow and thus unfavorable for upward motion and cyclone intensification, leading to the missed forecast of severe rainfall. Suggestions are made for future improvements of model forecasts.
机译:与经典点涡流模型不同,开发了一种新方法以提取不仅通过涡流的流动诱导的流动,而且在旋风的明确定义的涡旋核心区域中提取流动。应用这种新方法以诊断为错过夏季严重降雨预测的三个中位旋风(称为A,B和C)的相互作用,其中加拿大操作模型预测的每日降水量小于雨量仪和雷达测量。在这一事件中,负责严重降雨的旋风B,主要通过两个邻近旋风分离器所引起的流量:a和c到西部和东部。该工作试图评估观察到的旋风分离器与预测旋风B的垂直倾斜的程度是由500和1000 HPA的环境流(包括A-和C诱导流量)的平流引起的。结果表明,观察到的旋风B主要由旋风分离器诱导的500hpa的流入垂直倾斜的结构,该结构在垂直倾斜的结构上,该结构抵抗环境流的垂直剪切,因此有利于围绕严重时间的向上运动和旋风强化。雨量。然而,预测旋风分离器B主要由500hPa的旋风A诱导的流动,并且旋风分离器C诱导的流动以1000 HPA流入沿着环境流的垂直剪切的越来越北倾斜的结构,因此不利向上运动和旋风强化,导致错过的严重降雨预测。建议是为了将来改进模型预测。

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