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雷电回击速度非单调变化对电场波形的影响分析 被引量:2

Impact of non-monotonic change of return stroke velocity on electric field waveform
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摘要 针对回击速度的非单调变化,采用回击通道分段的思想,建立了速度非单调变化条件下的回击工程模型,并检验了该模型的有效性与准确性.基于变速度的回击工程模型,分析了回击速度非单调变化对电场的影响,发现回击速度主要通过影响电场辐射场分量来改变回击电场波形,并导致回击电场出现次峰现象.文中还分析了回击速度的不同变化趋势对电场波形的影响和速度峰值所在高度不同时电场的变化规律.结果表明:当速度峰值所对应高度不变的情况下,回击速度增长越快,电场曲线次峰的上升段越陡;速度衰减越慢,次峰之后的凹陷程度越不明显;速度峰值所在高度越低,电场次峰出现越早,表明回击速度的变化对回击波形的精细结构有显著影响.通过建立变速度的回击工程模型,可加强对电场波形精细结构的理解与认识. Due to the non-monotonic change of the return-stroke velocity(RSV),the return-stroke engineering model under the condition of non-monotonic speed is established by dividing the return-stroke flash channel into piecewise linear segments in this paper.The validity and accuracy of the model are verified.Based on the varied speed return-stroke engineering model,the impact of the non-monotonic change of the RSV on the electric field is analyzed.It is found that the RSV mainly acts on the electric field waveform by affecting the radiation field component,and causes the phenomenon of the secondary peak of the electric field.This paper also analyzes the influence of different speed trends on the electric field waveform and the variation of the electric field at the height of the velocity peak.It is shown that when the height corresponding to the peak of the velocity is constant,the faster the RSV increases,the steeper the rising section of the secondary hump of the electric field is;the slower the velocity decays,the less apparent the sunk depth is after the secondary hump.It is indicated that the non-monotonic trend of the RSV has significant influence on the fine structure of electric field.Establishing the new return-stroke engineering model is a good way for us to enhance the understanding and knowledge of the fine structure of electric field.
作者 贾晟 李云 孙征 石立华 邱实 JIA Sheng;LI Yun;SUN Zheng;SHI Lihua;QIU Shi(Army Engineering University of PLA,Nanjing 210007,China)
机构地区 陆军工程大学
出处 《电波科学学报》 EI CSCD 北大核心 2020年第2期234-241,共8页 Chinese Journal of Radio Science
基金 国家重点研发计划(2017YFC1501505) 国家自然科学基金(41675002)。
关键词 雷电 回击速度 非单调变化 回击模型 电场变化 lightning return-stroke velocity non-monotonic change return-stroke engineering model electric field change
作者简介 贾晟(1994—),男,山西人,陆军工程大学硕士研究生,主要研究方向为电磁环境效应与防护;联系人:李云(1990—),男,湖北人,陆军工程大学讲师,博士,主要研究方向为雷电探测及相关机理.E-mail:liyun0616@aliyun.com;孙征(1987—),男,河南人,陆军工程大学讲师,博士,主要研究方向为雷电防护和计算电磁学;石立华(1969—),男,河北人,陆军工程大学教授,博士生导师,主要研究方向为脉冲时域测量技术和信号时域分析技术;邱实(1984—),男,山东人,陆军工程大学副教授,博士,主要研究方向为雷电探测.
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  • 1陈燕萍.浅谈雷击模型[J].高电压技术,2005,31(7):15-17. 被引量:3
  • 2Bruce C E R, Golde R H. The lightning discharge[J]. Inst Elect Eng -Pt. 2, 1941, 88:487--520.
  • 3Rakov V A, Uman M A. Review and evaluation of lightning return stroke models including some aspects of their application[J]. IEEE Trans on EMC, 1998, 40(4) :403--426.
  • 4Gomes C, Coorav V. Concepts of lightning return stroke models[J]. IEEE Trans on EMC. 2000. 42 (1),82--96.
  • 5Rubinstein M, Uman M A. Methods for calculating the electromagnetic fields from a known source distributions Application to lightning[J].IEEE Trans on EMC, 1989, 31(2): 183--189.
  • 6Thottappillil R, Uman M A. Comparison of lightning return-stroke models[J]. J Geophys Res, 1993, 98 (D12):22903--22914.
  • 7Cooray V. Underground electromagnetic fields generated by the return strokes of lightning flashes[J]. IEEE Trans on EMC, 2001, 43(1):75--84.
  • 8Tian M H, Wei G H, Sun Y W, et al. Effects of propagation on the return stroke radiation fields[A]. The 3rd Int. Syrup. on EMC[C].Beijing, 2002.
  • 9虞吴.现代防雷技术基础[M].北京:清华大学出版社,2005.
  • 10刘欣生.雷电监测和防护研究的某些新进展[C].第三届全国雷电物理监测和防护科学研讨会.北戴河:[出版者不详],2001.

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