双月刊

ISSN 1006-9895

CN 11-1768/O4

中国陆地闪电活动与气象要素关系的分析
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1.南京信息工程大学 应急管理学院;2.中国人民解放军部队

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Study on the spatio-temporal distribution of land lightning and related meteorological factors in China
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1.Emergency Management College,Nanjing University of Information Science Technology;2.Troops of PLA

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    摘要:

    利用2013—2017年全球闪电定位系统(WWLLN)的闪电资料,并结合欧洲中期天气预报中心的第五代再分析资料(ERA-5)对中国大陆不同区域的闪电进行研究,从时空分布和数量关系上分析了闪电和对流有效位能(CAPE)、降水(P)、对流抑制能(CIN)、相对湿度(RH)之间的关系。结果发现:闪电和CAPE、P、CAPE×P在时间、空间上都有着很好的相关性;适当小的CIN和足够大的CAPE最有利于产生闪电;越高的CAPE会带来越多的闪电;越小的抑制能量越容易发生对流并进一步产生闪电,但是CIN不能太小,过小的CIN会导致闪电变少;低CIN值不是闪电发生的充分条件,相对湿度也需要很高;闪电活动集中在RH处于60 %~90 %的环境下,若RH继续增大,闪电活动会减小;即使在高CIN环境下,只要有一定的水汽和CAPE条件,也会有大量闪电。

    Abstract:

    Medium Range Weather Forecasts, were used to study lightning in different regions of mainland China. The relationship between lightning and convective available potential energy (CAPE), precipitation (P), convective inhibition (CIN) and relative humidity (RH) was analyzed from the spatial and temporal distribution and quantitative relationship. The results show that lightning has a good correlation with CAPE, P and CAPE×P in time and space. An appropriately small CIN and a sufficiently large CAPE are most conducive to generating lightning; The higher the CAPE, the more lightning; The smaller the inhibition energy is, the more likely it is to convection and further generate lightning. However, CIN should not be too small, because too small CIN will lead to less lightning. A low CIN value is not sufficient for lightning to occur, and the relative humidity needs to be high. Lightning activity is concentrated in the environment where RH is 60%~90%. If RH continues to increase, lightning activity will decrease. Even in high CIN conditions, with certain moisture and CAPE conditions, there can be a lot of lightning.

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历史
  • 收稿日期:2023-03-20
  • 最后修改日期:2023-08-28
  • 录用日期:2023-10-26
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