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Surface pressure profiles, vortex structure and initialization for hurricane prediction. Part I: analysis of observed and synthetic structures

机译:用于飓风预测的表面压力剖面,涡旋结构和初始化。第一部分:观察和合成结构的分析

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摘要

Without detailed reconnaissance, consistent representation of hurricane-like vortices in initial conditions for operational prediction and research simulations still remains elusive. It is thus often necessary, particularly for high-resolution intensity forecasting, to use synthetic tropical cyclone circulations to initialize forecast models. Variants on three commonly used surface pressure profiles are evaluated for possible use. Enhancements to the original profiles are proposed that allows definition of both the inner-core and outer circulation. The latter improvement creates a vortex more consistent with the estimated outer structure which sometimes appears to be crucial to the evolving intensity of the storm. It also allows smoother merging of the synthetic vortex with the environment. Comparisons of the profiles against (a) structure estimates, (b) each other, (c) structures obtained via conservation of angular momentum, and (d) observed vorticity structures, suggest that a new enhanced Fujita profile best represents real TC structures. Student-t tests indicate that improved fitting to the observations is statistically significant.
机译:如果没有详细的勘测,飓风状涡旋在初始条件下对于作战预测和研究模拟的一致性表示仍然难以捉摸。因此,经常有必要,特别是对于高分辨率强度预报,使用合成热带气旋环流来初始化预报模型。对三种常用的表面压力曲线的变化进行了评估,以用于可能的用途。提出了对原始轮廓的增强,以允许定义内核和外部循环。后一种改进产生了与估计的外部结构更一致的涡流,有时似乎对风暴强度的提高至关重要。它还可以使合成涡旋与环境更平滑地融合。针对(a)结构估计,(b)彼此,(c)通过角动量守恒获得的结构以及(d)观察到的涡度结构的轮廓比较,表明新的增强的Fujita轮廓最能代表真实的TC结构。 Student-t检验表明,对观测值的改进拟合具有统计学意义。

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  • 来源
    《Meteorology and Atmospheric Physics》 |2012年第2期|p.5-23|共19页
  • 作者单位

    School of Computational Sciences, George Mason University, Fairfax, VA, 22030, USA;

    School of Computational Sciences, George Mason University, Fairfax, VA, 22030, USA;

    Centre for Australian Weather and Climate Research, CAWCR, A partnership between CSIRO and the Bureau of Meteorology, G. P. O. Box 1289, Melbourne, 3001, Australia;

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  • 入库时间 2022-08-18 01:53:12

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