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Research on lightning disaster prevention in rural areas of Anhui Province:taking Ma'anshan City as an example |
Yang Chunming1, Chen Xiaowei1, Zhu Hao2 |
1. Maanshan Meteorological Bureau,Maanshan 243000; 2. Anhui Meteorological Disaster Prevention Center,Hefei 230061 |
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Abstract Based on the lightning positioning monitoring data of Anhui province from 2010 to 2020 and the statistical data of lightning disasters in Ma'anshan City from 1998 to 2022,a lightning density(intensity) calculation model was used to analyze the frequency,density(intensity) and the spatiotemporal distribution characteristics of lightning disasters.The research shows that lightning activity is the main disaster-causing factors of lightning disaster.The density of ground flash is between 0.04~1.50 times/(km2·a-1) and the intensity of ground flash is between 0.50~0.71 kA/(m2·a-1) in Ma'anshan,the possibility of lightning disaster in areas with large density(intensity) of ground flash is also high;the comprehensive lightning protection measures such as the renovation of lightning protection system inside and outside rural buildings(structure),lightning area interception and electrical equipment surge protection can prevent and reduce the losses caused by lightning disasters.The research results aim to provide decision-making reference for rural disaster prevention and mitigation management.
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Received: 21 July 2023
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[1] |
张弛,吴安坤,李迪,等.遵义市雷电灾害致灾因子危险性区划研究[J].中低纬山地气象,2023,47(2):100-104.
|
[2] |
李连伟,刘波.山地机场雷电灾害风险分析与防护:以贵阳龙洞堡机场为例[J].中低纬山地气象,2018,42(2):68-71.
|
[3] |
吴永斌,庄嘉,尹磊邦,等.云南墨江5.9级地震灾区雷电的危险性及其应急防御对策[J].中低纬山地气象,2020,44(5):72-76.
|
[4] |
李绣东.全国雷电灾害统计分析[J].沙漠与绿洲气象,2011,5(B8):3.
|
[5] |
田德宝,冯瑜骅,张雪慧,等.2012-2017年全国雷电灾害事故统计分析[J].科技通报,2020,36(5):42-47.
|
[6] |
蔡秀峰.湖南农村雷电灾害防御研究[D].长沙:湖南农业大学,2015.
|
[7] |
ARAUJO M A,FLAUZINO R A,ALTAFIM R A C,et al.Practical methodology for modeling and simulation of a lightning protection system using metal-oxide surge arresters for distribution lines[J].Electric power systems esearch,2015,118:47-54.
|
[8] |
JAN MIKES,MARCELA EFMERTOVA.Development of lightning rod for lightning protection standard in Europe,especially in Czech lands[J].Journal of electrostatics,2013,71(3):597-601.
|
[9] |
王鑫森,马中元,陈鲍发,等.江西致灾强雷电的特征分析[J].气象水文海洋仪器,2022,39(2):65-67,81.
|
[10] |
李卫平,赵生昊,易小萍,等.基于SRMT的重庆市地闪空间分布特征分析[J].气象水文海洋仪器,2022,39(4):88-90.
|
[11] |
倾鹏程,关育平.2010-2016年北京市雷电特征分析[J].气象水文海洋仪器,2022,39(2):57-59.
|
[12] |
任照环,许伟,余蜀豫,等.重庆市雷电灾害区划[J].中国农业资源与区划,2020,41(4):317-324.
|
[13] |
刘垚,缪启龙,刘淼,等.杭州市雷电活动特征及雷电灾害区划[J].气象与减灾研究,2011,34(4):62-67.
|
[14] |
韩经纬,王海梅,乌兰.内蒙古雷暴、冰雹灾害的评估分析与防御对策研究[J].旱区资源与环境,2009,23(7):31-38.
|
[15] |
贺姗,郑琦玉,余田野,等.基于雷电监测定位系统的雷电危害强度等级区划[J].湖北农业科学,2022,61(1):80-84.
|
[16] |
李京校,霍沛东,符琳,等.古建筑雷电灾害及防雷技术研究综述[J].气象与环境学报,2021,37(2):91-100.
|
[17] |
朱浩,王凯,程向阳,等.安徽省雷电灾害特征分析及区域灾情评估[J].长江流域资源与环境,2015,24(1):162-168.
|
[18] |
李迪,吴安坤,陆扬.下垫面对贵州闪电活动规律影响的分析[J].气象水文海洋仪器,2021,38(4):44-46.
|
[19] |
周方媛,肖稳安.安徽省近10年的雷电灾害分布特征分析[J].安徽农业科学,2010,38(4):1908-1911.
|
[20] |
巫俊威,靳小兵,向宇.雷击对地铁运营造成的经济损失评价研究:以成都地铁为例[J].高原山地气象研究,2015,35(4):85-90.
|
[21] |
周姝天,翟国方,施益军,等.城市自然灾害风险评估研究综述[J].灾害学,2020,35(4):180-186.
|
[22] |
马明,吕伟涛,张义军,等.我国雷电灾害及相关因素分析[J].地球科学进展,2008,23(8):856-865.
|
[23] |
刘雪涛,谢屹然,许迎杰,等.云南闪电活动的时空分布特征[J].干旱气象,2019,37(5):729-735.
|
[24] |
殷启元,郭泽勇,张义军,等.1995-2018年广东地区雷灾伤亡特征[J].热带气象学报,2021,37(3):512-520.
|
[25] |
谢建,娄伟平,孙科.浙江省雷电灾害脆弱性分析[J].中国农学通报,2014,30(17):267-271.
|
[26] |
朱明,丘志彪,蔡木民,等.探讨农村雷电灾害的成因及防雷减灾对策[J].气象研究与应,2012,33(1):90-92.
|
[27] |
杨东亮,高建文,李全景,等.农村防雷现状及建议[J].现代农业科技,2010(8):400.
|
|
|
|