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Characteristics of cloud-to-ground lightning and its relationship with climate change in Muli, Sichuan province, China

机译:中国四川省Muli云到地面闪电的特点及其与气候变化的关系

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Abstract Along with climate change, cloud-to-ground lightning (CG)-caused forest fires are becoming increasingly pronounced. This study employed the Chinese lightning location system data (2009–2015) and worldwide lightning location network data (2005–2015) to jointly analyze CG characteristics and study the correlation between CG and climate change. The Muli county in southwest China was taken as research area. The CG number showed a clear increasing trend on yearly timescale. At the monthly timescale, CG occurred from March to October, with a peak in June. At the daily timescale, 15:00–23:00 (local time) and 00:00–05:00 both had a high CG frequency, and the peak was at 18:00–19:00. We divided CG electric current intensity into six grades and found that negative CG accounted for more than 90% of total CG and, among these, the 3rd and 4th intensity grades accounted for about 70%. To examine the spatial distribution, we focused on lightning-caused forest fires high occurrence seasons. In spring, CG distribution changed from the initial southeast to the northwest, gradually spreading to the whole area of Muli, whereas the CG area gradually moved back to the southeast in autumn. Our research suggested that minimum temperature was the most sensitive temperature to CG change. In March, the relationship between CG and minimum temperature showed a strong positive correlation. Considered jointly, we suggest the CG and related lightning-caused forest fires could increase in the future under an increased minimum temperature and decreased precipitation, especially in March.
机译:摘要随着气候变化,云到地闪电(CG)被分担的森林火灾越来越明显。本研究采用了中国闪电定位系统数据(2009 - 2015)和全球雷电定位网络数据(2005-2015),共同分析了CG特征,并研究了CG与气候变化之间的相关性。中国西南部的Muli县被视为研究区。 CG编号在年度尺度上显示了明显的趋势。在每月时间尺度,CG发生在3月至10月,6月份高峰。在每日时间尺度,15:00-23:00(局部时间)和00:00-05:00两者都具有高CG频率,并且峰值为18:00-19:00。我们将CG电流强度分成六个等级,发现负CG占总CG的90%以上,其中,第3级和第4级占约70%。为了检查空间分布,我们专注于闪电导致的森林火灾高发生季节。在春天,CG分布从东南部的最初转变为西北,逐渐向多种多地蔓延到了多种地区,而CG地区逐渐搬回东南部。我们的研究表明,最小温度是CG变化最敏感的温度。 3月,CG与最小温度之间的关系显示出强烈的正相关性。共同考虑,我们建议CG和相关的闪电引起的森林火灾可能会在未来的最低温度和降水量下降下未来增加,特别是在3月份。

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