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Relating Observations of Gradient Nonbalance at the Top of Hurricanes With Their Warm Core Structures

机译:在飓风顶部与温暖的核心结构相关观察梯度非间距的观察

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摘要

Recent analysis of Weather Research and Forecasting simulations shows that the flow around high-pressure regions that often develop at the top of Hurricanes (15-km altitude) violates the gradient wind balance, hence termed as "gradient nonbalance." While observations at such high altitudes are rare, recently, NASA-HS3 and the Office of Naval Research-Tropical Cyclone Intensity campaigns deployed dropsondes from unprecedented levels around 18 km. In this work we use a wavenumber decomposition method to reproduce 2-D slices and 3-D structures from three storms from these campaigns: Edouard (2014), Joaquin (2015), and Patricia (2015). The analyzed data show that the development of high pressure at the hurricane's top leads to various degrees of gradient nonbalance. These highs are a hydrostatic reflection of the storm tilt, which offsets the warm core with respect to the near surface low and the slanted eyewall. The implications of these findings and the relations with recent reports of upper-level wind field are discussed.
机译:最近对天气研究和预测模拟的分析表明,经常在飓风顶部(15公里海拔高度)在高压区域周围的流动违反了梯度风平衡,因此被称为“梯度非衡量”。虽然这种高海拔高度的观察是罕见的,但最近,NASA-HS3和海军研究 - 热带气旋强度活动,从前所未有的水平左右部署了滴剂约18公里。在这项工作中,我们使用波数分解方法来从这些活动的三种风暴中重现2-D切片和3-D结构:Edouard(2014),Joaquin(2015)和Patricia(2015)。分析的数据表明,飓风的顶部的高压的发展导致各种梯度非间距。这些高度是风暴倾斜的静液压反射,其相对于近表面低和倾斜的眼墙偏离温暖的芯。讨论了这些调查结果的影响和与最近的上层风场报告的关系。

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