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How Does Hurricane Edouard (2014) Evolve toward Symmetry before Rapid Intensification? A High-Resolution Ensemble Study

机译:飓风Edouard(2014)在快速增长之前向对称演变如何? 高分辨率集合研究

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A 14-member high-resolution ensemble of Edouard (2014), a moderately sheared tropical storm that underwent rapid intensification (RI), is used to determine causes of vortex alignment and precipitation symmetry prior to RI. Half the members intensify similarly to the NHC's best track, while the other seven ensemble members fail to reproduce intensification. Analyses of initial conditions (vertical wind shear, sea surface temperatures, relative humidity, vortex structure) reveal that lower humidity and weaker, more tilted vortices in nonintensifying members likely increase their susceptibility to boundary layer flushing episodes. As the simulations progress, vortex tilt, inner-core humidity, and azimuthal variations in the structure of precipitation best differentiate the two ensemble subsets. Although all members initially are slowly intensifying asymmetric storms, the RI members are unique in that they have more persistent deep convection downshear, which favors vortex alignment via the stretching term and/or precession. As deep convection transitions to stratiform precipitation and anvil clouds in the upshear quadrants, evaporation and sublimation of condensate advected from the downshear quadrants moisten the middle to upper troposphere. This is hypothesized to promote an increase in precipitation symmetrization, a necessary precursor for RI.
机译:Edouard(2014年)的14个成员高分辨率集成,这是一种正在进行快速增强(RI)的中等剪切的热带风暴,用于确定RI之前的涡旋对准和降水对称的原因。一些成员与NHC的最佳轨道同样加剧,而另外七个集合成员未能复制增强。初始条件(垂直风剪,海面温度,相对湿度,涡旋结构)的分析揭示了较低的湿度和较弱,在非敏感成员中的更倾斜的涡流可能会增加对边界层冲洗发作的易感性。随着仿真进展,涡旋倾斜,内核湿度和沉淀结构结构的方位湿度最佳地分解了两个集合子集。尽管所有成员最初正在缓慢地加剧不对称的暴风雨,但是RI成员是独一无二的,因为它们具有更加持久的深度对流,其利用拉伸术语和/或进程来解决涡流对齐。随着深度对流转变对地层沉淀和瘙痒型摩擦云的转变,蒸发和升华从下游象限方向上的中间对流层滋润。这是假设促进沉淀对称化的增加,RI的必要前体。

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