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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Key Role of the Kuroshio Current in the Formation of Frontal Structure of an Extratropical Cyclone Associated with Heavy Precipitation
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Key Role of the Kuroshio Current in the Formation of Frontal Structure of an Extratropical Cyclone Associated with Heavy Precipitation

机译:KUROSHIO电流在与重度沉淀相关的额外旋风分离器正面结构中的关键作用

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In this study, the authors examined how the Kuroshio Current affected the frontal structure of an extratropical cyclone associated with heavy precipitation. We focused on an extratropical cyclone and related heavy precipitation on Miyake Island, which is situated near the Kuroshio Current, in January 2017. We first investigated the frontal structure and the attendant precipitation using observational data and objective analysis data. As the cyclone grew around the Kuroshio Current, a nonclassic front (outer front) intensified to the north of a warm front. A line‐shaped precipitation band developed along the outer front, contributing to the heavy precipitation on Miyake Island. The outer front lay along a sea surface temperature (SST) front associated with the Kuroshio Current in its early life stage. To clarify the impact of the SST front on the formation of the incipient outer front, we next conducted cloud‐resolving numerical experiments using SST distributions with and without the oceanic frontal structure. In the real SST experiment, sensible heat supply from the Kuroshio Current was large, while the amount from the ocean on the northern side of the warm current was small. This meridional difference in sensible heating caused frontogenesis along the SST front, which created the incipient front. Consequently, the real SST experiment reproduced the formation of the front. In contrast, the SST sensitivity experiments did not simulate such a sensible heating pattern or front formation. Thus, the Kuroshio Current played a key role in forming the incipient outer front and contributed to the heavy precipitation.
机译:在这项研究中,作者审查了Kuroshio目前如何影响与重沉淀相关的额外旋风的正面结构。我们专注于Miyake Island的含有型旋风和相关的重沉淀,位于2017年1月的Kuroshio Current附近。我们首先使用观察数据和客观分析数据研究了额度结构和伴随降水。随着旋风在Kuroshio电流周围围绕着旋风,朝向温暖的前沿的非染色前(外部前面)。沿着外面开发的线状沉淀带,有助于Miyake岛的重沉淀。外部前部沿着海面温度(SST)正面与其早期寿命中的Kuroshio电流相关联。为了阐明SST前沿对初期外部前面的影响,我们接下来使用SST分布进行云解析数值实验,无需海洋正面结构。在真实的SST实验中,来自Kuroshio电流的明智热源很大,而来自温暖电流北侧的海面上的含量小。这种合理加热中的这些经络差异导致SST前部的前进发生,从而创造了初期前部。因此,真实的SST实验再现了前部的形成。相反,SST敏感性实验没有模拟这种明智的加热图案或前形成。因此,Kuroshio电流在形成初期外部前面并导致重沉淀作出了关键作用。

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