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Single- and Dual-Doppler Radar Analysis of Misovortices within Snowband in Japan Sea Coastal Region on 17 January 2017

机译:2017年1月17日日本海洋沿海地区雪段内散热中的单多普勒雷达分析

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The characteristics and finescale evolution of misovortices within a snowband were examined using low-level high-resolution single- and dual-Doppler radar analysis. From 02:00 to 06:00 JST on 17 January 2017, many misovortices developed within three snowbands in the Japan Sea coastal region. The vortices developed along the shear line between the offshore north-northwesterly and the coastal northeasterly. As discussed in several previous studies of misovortices along airmass boundaries, horizontal shearing instability was considered to be a possible mechanism responsible for misovortex formation. A detailed investigation was performed on the most distinct snowband and misovortices embedded within it. Dual-Doppler analysis revealed a detailed behavior of vortex during merger, such as the morphological change from quasi-circular to elliptical shape, and the counterclockwise rotation which caused high-amplitude inflection of the shear line in less than 10 minutes. During the decay stage, the vortices weakened along with weakening convergence. The results suggest that evolution of the misovortex appears to have been closely tied to the low-level convergence within the vortex.
机译:使用低级高分辨率单次和双多普勒雷达分析检查了雪段内脱落内的混合物中的特征和FineScale演变。 2017年1月17日从02:00到06:00,在日本海洋沿海地区的三次滑雪带内开发了许多发出的混合物。沿着离岸北部 - 西北和东北沿海的剪切线开发的漩涡。如在沿着空气界限的若干先前的误导研究中所讨论的,水平剪切不稳定性被认为是负责Misovortex形成的可能机制。对其中嵌入其中的最鲜明的雪段和混合物进行了详细的调查。双多普勒分析显示了在合并期间涡旋的详细行为,例如从准圆形到椭圆形的形态变化,以及在不到10分钟的剪切线引起高幅度拐点的逆时针旋转。在衰变阶段,涡流随着弱化疲软而削弱。结果表明,Misovortex的演变似乎与涡旋内的低级收敛密切相关。

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