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Investigating the Potential of Using Radar Echo Reflectivity to Nowcast Cloud-to-Ground Lightning Initiation over Southern Ontario

机译:调查使用雷达回波反射率在安大略省南部进行临近预报的云到地面闪电启动的潜力

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摘要

The potential for using radar echo reflectivity to forecast cloud-to-ground (CG) lightning initiation in the 0-1-h time frame was investigated in southern Ontario, Canada. The main purpose of this investigation was to determine a reflectivity threshold at an isothermal altitude and a threshold for echo tops that best predict CG lightning initiation. The study examined lightning, radar, and upper-air sounding data for only airmass-type convection during the summer of 2008. The best predictor of the onset of CG lightning was found to be a 40-dBZ reflectivity level detected at an altitude with an environmental temperature of -10 degrees C, with an average lead time of 17 min. Echo tops reaching or exceeding 7 km were a necessary condition prior to or at the time of the first CG lightning occurrence. Also, certain differences were observed depending on the polarity of the initial lightning flashes. Positive lightning flashes, when compared to negative ones, tended to deliver stronger electric currents and to be farther away from the locations of highest reflectivity on maximum reflectivity (MAXR) radar products. Lead times were observed to be shorter for positive lightning, which might suggest that positive-lightning-producing storm clouds became strongly electrified faster than their negative counterparts. Findings indicate the potential to develop a lightning nowcast algorithm suitable for Canadian forecast operational use.
机译:在加拿大安大略省南部,研究了使用雷达回波反射率预测0-1h时间内云对地(CG)闪电启动的潜力。这项研究的主要目的是确定等温高度的反射率阈值和最能预测CG闪电启动的回波顶部阈值。该研究仅在2008年夏季检查了气团型对流的闪电,雷达和高空探测数据。发现CG闪电发作的最佳预测指标是在海拔40°C的高空探测到的反射率水平为40 dBZ。环境温度为-10摄氏度,平均交货时间为17分钟。在第一次CG闪电发生之前或之时,达到或超过7 km的回波顶部是必要条件。另外,根据初始闪电的极性观察到某些差异。与负闪电相比,正闪电往往会产生更强的电流,并且与最大反射率(MAXR)雷达产品上反射率最高的位置相距较远。观察到正极闪电的交货时间更短,这可能表明产生正极闪电的暴风云比没有负极闪电的暴风云更快地带电。研究结果表明了开发适合加拿大预报作战用途的闪电临近预报算法的潜力。

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