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Subseasonal and Diurnal Variability in Lightning and Storm Activity over the Yangtze River Delta, China, during Mei-yu Season

机译:中国长江三角洲,中国的雷雨和风暴活动中的季期期和昼夜变异

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Using 5 years of operational Doppler radar, cloud-to-ground (CG) lightning observations, and National Centers for Environmental Prediction reanalysis data, this study examined the spatial and temporal characteristics of and correlations between summer storm and lightning activity over the Yangtze River Delta (YRD), with a focus on subseasonal variability and diurnal cycles. The spatiotemporal features of storm top, duration, maximum reflectivity, size, and cell-based vertical integrated liquid water were investigated using the Storm Cell Identification and Tracking algorithm. Our results revealed that there was high storm activity over the YRD, with weak diurnal variations during the mei-yu period. Specifically, storms were strongly associated with mei-yu fronts and exhibited a moderate size, duration, and intensity. On average, afternoon storms exhibited stronger reflectivity and higher storm tops than morning storms, as evidenced by the afternoon peak in CG lightning. The storm intensity strengthened in the post-mei-yu period, due to an increase in atmospheric instability; this was accompanied by a higher frequency of CG lighting. The diurnal cycles of storm frequency and CG lightning in the post-mei-yu period followed a unimodal pattern with an afternoon peak. This is attributable to increased thermodynamic instability in the afternoon, as little diurnal variation was observed for wind shear and moisture. An inverse correlation between lightning occurrence and mean peak current (MPC) for negative CG lightning was evident during the pre-mei-yu and mei-yu periods. The diurnal variation in MPC for negative CG lightning agreed well with that for storm intensity.
机译:这项研究采用了5年的运营多普勒雷达,云到地(CG)雷击,以及国家环境预测重新分析数据的国家中心,研究了长江三角洲夏季风暴和雷电活动之间的空间和时间特征和相关性(yrd),重点关注各种变化和昼夜循环。使用风暴电池识别和跟踪算法研究了风暴顶部,持续时间,最大反射率,尺寸和基于细胞的立式集成液体的时空特征。我们的研究结果表明,在梅宇期间,YRD的风暴活动有很大的差异。具体而言,风暴与Mei-yu Fronts强烈有关,并且呈现温和,持续时间和强度。平均而言,下午的风暴表现出更强的反射率和更高的风暴顶部,而不是晨风,如CG Lightning中的下午峰值所证明。由于大气不稳定的增加,梅宇期内的风暴强度加强;这伴随着较高的CG照明频率。在Mei-yu期间的风暴频率和CG闪电的昼夜循环沿着午后的峰值垂直于一个单峰模式。这可归因于下午增加热力学不稳定,因为对于风剪切和水分观察到较少的昼夜变化。在预梅玉和美玉期间,闪电发生与均值峰值电流(MPC)之间的逆相关性是显而易见的。用于负CG闪电的MPC的昼夜变化与风暴强度相同。

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