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A low-wavenumber analysis of the relative roles of the environmental and vortex-scale variables responsible for rapid intensity changes in landfalling tropical cyclones

机译:对造成登陆热带气旋强度快速变化的环境和涡旋尺度变量的相对作用进行低波分析

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Forecasting rapid intensity changes in tropical cyclones (TCs) is hard as the factors responsible span many scales. External and internal dynamical and thermodynamical variables act simultaneously in a nonlinear fashion, either complementing, amplifying, inhibiting or not impacting the TC intensity at all. We try to address the following question: What is the relative importance of the external and vortex-scale variables that influence rapid intensity changes within a TC? Further, which of these variables must be prioritized from an observational standpoint? To answer these questions, a systematic analysis was conducted on a large number of representative TCs to make statistically significant conclusions using discriminant analyses of wavenumber (WN) -filtered fields, with a principal component analysis to detect over-fitting and identify the subset of variables (from the environment and the vortex) consistently correlated with rapid intensity change. Our analyses indicate that a small number of variables wield the most influence on TC rapid intensity changes. The most important variables within the vortex are the WN 0 of precipitation within the radius of maximum winds, the amplitudes of WN 1 of precipitation and the mid-level horizontal moisture flux convergence in the rain band region. Likewise, the most important environmental variables are the angle of the driest air from the shear vector and the magnitude of environmental wind shear. These variables must be prioritized in future observational and consequent data assimilation efforts.
机译:预测热带气旋(TCs)强度的快速变化是困难的,因为影响这些因素的因素涉及多个尺度。外部和内部动力学和热力学变量以非线性方式同时作用,从而补充,放大,抑制或完全不影响TC强度。我们尝试解决以下问题:影响TC中强度快速变化的外部和涡尺度变量的相对重要性是什么?此外,从观察角度来看,必须优先考虑这些变量中的哪个?为了回答这些问题,我们对大量代表性TC进行了系统分析,使用对波数(WN)滤波的场进行判别分析,得出具有统计意义的结论,并进行了主成分分析,以检测过度拟合并确定变量的子集。 (来自环境和涡流)与强度的快速变化持续相关。我们的分析表明,少数变量对TC快速强度变化影响最大。涡旋中最重要的变量是最大风半径内的降水WN 0,降水WN 1的振幅以及雨带区域中水平水汽通量的收敛。同样,最重要的环境变量是来自剪切矢量的最干燥空气的角度和环境风切变的大小。在以后的观测和随后的数据同化工作中,必须优先考虑这些变量。

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