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首页> 外文期刊>Journal of the Atmospheric Sciences >A Piecewise Potential Vorticity Inversion Algorithm and Its Application to Hurricane Inner-Core Anomalies
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A Piecewise Potential Vorticity Inversion Algorithm and Its Application to Hurricane Inner-Core Anomalies

机译:分段势涡反演算法及其在飓风内核异常中的应用

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摘要

In this study, a piecewise potential vorticity (PV) inversion algorithm for an arbitrary number of PV pieces is developed by extending Wang and Zhang’s PV inversion scheme, and then the nonlinear responses to various types and magnitudes of axisymmetric PV anomalies (PVAs) in hurricane vortices are investigated. Results show that the upper- and lower-level PVAs in the eye help enhance cyclonic flows in the eyewall, but with weak vertical interactions between them. The balanced flows corresponding to the PVAs in the eyewall appear to account for a substantial portion of the warm core and the minimum pressure in the eye. However, the lower-level PVA in the eye inversion layer is more effective in contributing to the hurricane intensity than that at the upper levels. Results also show that the radius of the balanced response of PVAs is more sensitive to the mean vortex intensity than the vertical penetration; the weaker the mean vortex intensity, the larger the radius of the influence will be. Similar behaviors are also observed for the quasi-balanced secondary circulations. That is, given a diabatic heating profile in the eyewall, the weaker the background vortex or the PVAs, the stronger the secondary circulations will be. It is found that the development of an outer eyewall (or spiral rainbands) could be inimical to the inner eyewall in several ways, such as by 1) adding an anticyclonic flow inside to offset the cyclonic rotation of the inner eyewall, 2) enhancing a ring of a lower pressure zone underneath to broaden the inner-core lower pressure region, 3) inducing an inward (outward) radial flow outside (inside) in the PBL (upper level) to block the energy supply to (outflow of) the inner eyewall, and 4) generating subsidence between the two eyewalls to suppress the development of deep convection in the inner eyewall.
机译:在这项研究中,通过扩展Wang和Zhang的PV反演方案,然后针对飓风中各种类型和大小的轴对称PV异常(PVA)的非线性响应,开发了针对任意数量PV块的分段势涡(PV)反演算法。研究了涡旋。结果表明,眼睛中的上层和下层PVA有助于增强眼壁中的气旋流动,但它们之间的垂直相互作用较弱。眼墙中对应于PVA的平衡流似乎占了暖芯的很大一部分,并且在眼睛中的压力最小。但是,眼睛反转层中的较低水平的PVA对飓风强度的影响比较高水平的PVA更有效。结果还表明,与垂直穿透相比,PVA平衡响应的半径对平均涡流强度更敏感。平均涡旋强度越弱,影响的半径就越大。对于准平衡二次循环也观察到类似的行为。也就是说,给定眼壁的绝热加热曲线,背景涡旋或PVA越弱,二次循环就越强。发现外眼墙(或螺旋形雨带)的发展可能以多种方式不利于内眼墙,例如:1)在内部添加反气旋流以抵消内眼墙的旋风旋转; 2)增强下部的低压区域的环以扩大内核的低压区域,3)在PBL(上部)的外部(内部)引起向内(向外)的径向流动,以阻止向内部(外部)的能量供应4)在两个眼壁之间产生沉陷,以抑制内眼壁深对流的发展。

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