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Southern Hemisphere Application of the Systematic Approach to Tropical Cyclone Track Forecasting. Part IV : sources of large track errors by dynamical models

机译:南半球系统方法在热带气旋径迹预报中的应用。第四部分:动力学模型的大航迹误差来源

摘要

Sources of 72-h track errors > 300 n mi by four dynamical model tropical cyclone predictions in the Southern Hemisphere during the 1997-98 and 1998-99 seasons are studied using conceptual models Carr and Elsberry have previously developed for the western North Pacific. Each of these conceptual models describes how the dynamical model incorrectly predicts a known physical cause of tropical cyclone motion. Midlatitude circulation-related error sources occur more frequently in the Southern Hemisphere, which is as expected since deeply penetrating midlatitude trough-ridge circulations have more of an effect on tropical cyclone motion. In addition to erroneous predictions of midlatitude cyclogenesis and anticyclogenesis, the dynamical models error in their response to midlatitude vertical wind shear and baroclinic cyclone interactions with the tropical cyclones. One frequently occurring tropical-related large track-error mechanism is Excessive-Direct Cyclone Interaction, which occurs for similar reasons in the Southern Hemisphere as in the western North Pacific study of Carr and Elsberry. Although this is a retrospective study of known large track errors, the ultimate goal is to help the forecaster detect likely erroneous tracks in real-time.
机译:使用卡尔和埃尔斯伯里先前为北太平洋西部开发的概念模型研究了南半球在1997-98年和1998-99季节进行的四个动力学模型热带气旋预报的72小时跟踪误差> 300 n mi。这些概念模型均描述了动力学模型如何错误地预测热带气旋运动的已知物理原因。与中纬度环流有关的误差源在南半球更为频繁,这是可以预期的,因为深度穿透的中纬度槽脊环流对热带气旋运动的影响更大。除了对中纬度气旋和反气旋作用的错误预测之外,动力学模型对中纬度垂直风切变和斜压气旋与热带气旋相互作用的响应也存在误差。与热带有关的大轨道误差是一种经常发生的机制,是过度直接气旋相互作用,其发生的原因与南半球西部对卡尔和埃尔斯伯里的研究类似。尽管这是对已知大轨道错误的回顾性研究,但最终目标是帮助预报员实时检测可能的错误轨道。

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