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On the Similarity of Lower-Stratospheric Potential Vorticity Dipoles above Tropical and Midlatitude Deep Convection

机译:论热带与中远对流高于热带和中际对流的较低平流层势涡脂果的相似性

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Simulations of the effects of deep convection on the structure of potential vorticity (PV) in the upper troposphere and lower stratosphere (UTLS) have shown that a common signature in the presence of ambient horizontal vorticity is a horizontal PV dipole. Here, the relationship between convection and PV structures in the UTLS in Tropical Cyclone Talas and the extratropical "Super Tuesday'' cyclone is investigated with the University of Wisconsin Nonhydrostatic Modeling System (UWNMS). Dipoles of potential temperature in the UTLS are interpreted as an upward deflection of the ambient flow over the updraft (cold), followed by subsidence in its lee (warm), aligned with the wind direction. PV dipoles larger than +/- 20 PV units (1 PVU = 10(-6) K kg(-1) m(2) s(-1)) are identified, with typical vertical and horizontal extents of; 3 and; 200 km, respectively, and lifetimes up to 12 h. Confirming the findings of Chagnon and Gray, it is found that horizontal PV dipoles are related to vortex tilting, where horizontally oriented vorticity associated with vertical shear of the ambient wind is bent into a horseshoe shape by the updraft, yielding a PV dipole. This suggests that theta dipoles are perpendicular to PV dipoles and that "low PV lies to the left of the wind shear,'' or, in the case of tropical cyclones, "low PV lies radially outward.'' Mesoscale jets occur between the dipoles, which oppose the ambient anticyclonic flow. During the extratropical transition of Talas, convective PV anomalies evolved under synoptic-scale deformation into a pair of PV streamers, which modified the midlatitude westerly jet.
机译:对上对流层和较低平流层(UTLS)中潜在涡度结构(PV)结构的影响已经表明,环境水平涡度存在的常见拟计是水平PV偶极子。这里,用威斯康星大学(UWNMS)研究了热带气旋塔拉斯和热带气旋塔拉斯和卓越的“超星期二”旋风中的对流和光伏结构的关系。uWNMS中潜在温度的偶极子被解释为一个向上偏转上升流(冷)(冷),然后沉降(温暖),与风向对齐。PV偶极子大于+/-20光伏单位(1 PVU = 10(-6)k kg (-1)M(2)S(-1))被鉴定,典型的垂直和水平范围; 3和; 200公里,高达12小时的寿命。确认恰旧和灰色的结果,它是发现水平的PV偶极子与涡旋倾斜有关,其中与环境风的垂直剪切相关的水平定向涡度被上升流弯曲成马蹄形,产生PV偶极子。这表明θ偶联垂直于光伏偶极子“低光伏位于左侧剪切,“或者,在热带气旋的情况下,”低光伏位于径向向外“。''Mescle喷气机在偶极子之间发生,这反对环境反气旋流。在缩略图的缩放变形下,对流光伏异常在塔拉斯的途径过渡期间进化到一对PV飘带,这改性了中间射流。

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