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中国农学通报 ›› 2016, Vol. 32 ›› Issue (2): 163-169.doi: 10.11924/j.issn.1000-6850.casb15100141

所属专题: 农业气象

• 资源 环境 生态 土壤 气象 • 上一篇    下一篇

北京密云某养殖场雷电灾害事故分析与对策

宋平健1,李京校1,李如箭1,张彦勇2,石 健1,郝继伟1   

  1. (1北京市避雷装置安全检测中心,北京 100089;2河北省防雷中心,石家庄 050021)
  • 收稿日期:2015-10-31 修回日期:2015-12-28 接受日期:2015-11-17 出版日期:2016-01-28 发布日期:2016-01-28
  • 通讯作者: 宋平健
  • 基金资助:
    北京市气象局科技项目“露天公共场所人身雷击风险及防护技术研究”(BMBKJ201503011)、“引下线接地电阻的测试方法研究及流程”(BMBKJ201503012)。

Analysis and Countermeasures of Lightning Disaster on a Breeding Farm in Miyun County, Beijing

Song Pingjian1, Li Jingxiao1, Li Rujian1, Zhang Yanyong2, Shi Jian1, Hao Jiwei1   

  1. (1Beijing Lightning Devices Security Test Center, Beijing 100089; 2Lightning Protection Center of Hebei, Shijiazhuang 050021)
  • Received:2015-10-31 Revised:2015-12-28 Accepted:2015-11-17 Online:2016-01-28 Published:2016-01-28

摘要: 雷电灾害事故分析有助于更好地掌握雷击途径和方式,认识雷电致灾规律,从而采取更有效的防护措施。针对2014年7月1日北京市密云县西田各庄镇某养殖场发生的雷电灾害事故,统计分析雷击时间段内该区域闪电定位资料;根据滚球法判断养殖场是否在直击雷保护范围内,计算牲畜位置处跨步电压和养殖棚雷电静电感应电压。通过逐项计算和分析,结果表明:牲畜遭旁侧闪络和接触电压致死。雷电的静电感应在金属棚上产生高电压,由于金属棚的支撑钢架结构未做接地,感应电荷释放通道不顺畅,与地面存在电位差,发生旁侧闪络,以及当牲畜接触到钢结构后,高电位通过牲畜向地面释放,致使牲畜死亡。最后提出了对应的防护措施和方法,减少或避免以后类似雷电灾害事故的发生。

关键词: 辽宁、 高空急流、低空急流、次级环流, 辽宁、 高空急流、低空急流、次级环流

Abstract: It is helpful to grasp the approaches and ways of lightning, and understand the regularities of lightning disaster by analyzing the lightning accidents, thus more effective measures can be taken for lightning protection. Firstly, the lightning location data in the area of lightning strike were analyzed according to a lightning disaster on a breeding farm in Xitiangezhuang Town, Miyun County, Beijing on July 1st 2014. According to the rolling ball method, the authors judged whether the breeding farm was in the range of direct lightning protection. Then the step voltage and lightning electrostatic induction voltage at the breeding farm were calculated. The results showed that: the livestock was killed by the lateral flashover and the touch voltage from lightning. The high voltage was inducted by lightning electrostatic in the metal shed. However, the supporting steel structures of metal shed had no grounding so that the releasing channel of the induced charge was not smooth. There was a potential difference between the ground and the metal shed, therefore the lateral flashover happened. In addition, when the livestock was exposed to the steel structure, the high potential released through livestock to the ground. In the end, the corresponding protective measures were put forward to reduce or avoid similar accidents in the future.

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