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Influence of Atmospheric Asymmetries on the Intensification of Hurricane Opal: Piecewise PV Inversion Diagnosis of a GFDL Model Forecast

机译:大气不对称性对飓风蛋白石强度的影响:GFDL模型预测的分段PV反演诊断

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Although Hurricane Opal of 1995 is one of the most intensely studied hurricanes ever, the cause of the hurricane's rapid intensification over the Gulf of Mexico is still a matter of controversy. While some authors have concluded that an approaching upper-level atmospheric trough had a significant impact on intensification, others have inferred only a small impact of the trough on the hurricane's strengthening. A recent study by the present authors diagnosed a Geophysical Fluid Dynamics Laboratory (GFDL) model forecast and found that eddy fluxes made only a small contribution to the lower-tropospheric evolution of the model hurricane vortex near the core. Thus, at face value, this previous study supported the conclusion that the upper-level trough was not important to the intensification of Opal. As noted in that study, however, in order to isolate the contribution of the trough by itself, the technique of piecewise potential vorticity (PV) inversion is required. The present study is the first to use this method in a diagnostic framework to determine the asymmetric features that contribute to tropical cyclone intensification. The present study uses the same GFDL hurricane model forecast as in the previous study to diagnose the balanced contribution of various pieces of the asymmetric PV anomaly to the intensification of the model Opal vortex. Though the upper-level trough is an outer-environmental feature, its influence is found to extend into Opal's inner-core region. The eddies associated with the trough induce an upper-level inner-core acceleration. An estimate of the impact of convective feedback on the influence of the upper-level trough on Opal's evolution is made. The results elucidate and modify the conclusions of other authors. There is no indication from the present diagnosis that the upper-level trough was a significant contributor to Opal's lower-tropospheric intensification.
机译:尽管1995年的欧泊飓风是有史以来研究最深入的飓风之一,但飓风在墨西哥湾迅速加剧的原因仍然是一个有争议的问题。虽然一些作者得出结论说,接近高空大气槽对集约化有重大影响,但其他人仅推断槽对飓风的强化影响很小。作者的最新研究诊断了地球物理流体动力学实验室(GFDL)模型的预测,并发现涡流仅对核心附近的模型飓风涡流的低对流层演化贡献很小。因此,从表面上看,这项先前的研究支持以下结论:上谷对蛋白石的集约化并不重要。但是,如该研究中所述,为了单独隔离波谷的影响,需要分段电位涡度(PV)反转技术。本研究是首次在诊断框架中使用此方法来确定导致热带气旋加剧的不对称特征。本研究使用与先前研究中相同的GFDL飓风模型预测来诊断不对称PV异常的各个部分对模型Opal涡旋强化的平衡贡献。尽管高层槽是外部环境特征,但发现其影响扩展到了蛋白石的内芯区域。与波谷相关的涡流会引起高层的内核加速。估计了对流反馈对上层槽对Opal演化的影响。结果阐明并修改了其他作者的结论。从目前的诊断来看,没有迹象表明高谷是欧泊对流层低层集热的重要原因。

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