高电压技术
高電壓技術
고전압기술
HIGH VOLTAGE ENGINEERING
2012年
2期
457-463
,共7页
有限电导率%雷电电磁场%上升沿时间%场强幅值%电流强度%反演
有限電導率%雷電電磁場%上升沿時間%場彊幅值%電流彊度%反縯
유한전도솔%뇌전전자장%상승연시간%장강폭치%전류강도%반연
finitely conductvity%lightning electromagnetic field%rise time%field strength amplitude%current intensity%invert
为研究有限电导率对地闪回击辐射场上升沿时间和场强幅值的影响规律,运用Cooray-Rubinstein计算方法对湿地、干地和沙地等不同土壤类型电导率下雷电电磁场传播特征进行了数值模拟,得出随着电导率的减小,回击电磁场波形上升沿时间明显增加,因此电导率对场强峰值到达时差法的闪电定位误差影响较大;通过波前时间和观测距离拟合函数关系可以计算闪电发生的距离或传播路径的电导率,磁感应场强幅值随着电导率的减小、观测距离的增加而衰减增大。最后通过与目前常用的反演雷电流强度的公式对比提出了考虑土壤电导率情况下反演雷电流强度的修正曲线。
為研究有限電導率對地閃迴擊輻射場上升沿時間和場彊幅值的影響規律,運用Cooray-Rubinstein計算方法對濕地、榦地和沙地等不同土壤類型電導率下雷電電磁場傳播特徵進行瞭數值模擬,得齣隨著電導率的減小,迴擊電磁場波形上升沿時間明顯增加,因此電導率對場彊峰值到達時差法的閃電定位誤差影響較大;通過波前時間和觀測距離擬閤函數關繫可以計算閃電髮生的距離或傳播路徑的電導率,磁感應場彊幅值隨著電導率的減小、觀測距離的增加而衰減增大。最後通過與目前常用的反縯雷電流彊度的公式對比提齣瞭攷慮土壤電導率情況下反縯雷電流彊度的脩正麯線。
위연구유한전도솔대지섬회격복사장상승연시간화장강폭치적영향규률,운용Cooray-Rubinstein계산방법대습지、간지화사지등불동토양류형전도솔하뇌전전자장전파특정진행료수치모의,득출수착전도솔적감소,회격전자장파형상승연시간명현증가,인차전도솔대장강봉치도체시차법적섬전정위오차영향교대;통과파전시간화관측거리의합함수관계가이계산섬전발생적거리혹전파로경적전도솔,자감응장강폭치수착전도솔적감소、관측거리적증가이쇠감증대。최후통과여목전상용적반연뇌전류강도적공식대비제출료고필토양전도솔정황하반연뇌전류강도적수정곡선。
In order to analyze the effect of finite conductivity on the rise time and field strength amplitude of radiation field of return stroke radiation field of cloud-ground flash,we calculated the propagation characteristic of lightning return stroke electromagnetic field along the different conductivity in imperfectly ground surface such as wetland,dry land and sand by using the Cooray-Rubinstein algorithm.The results show that,due to the decrease of ground surface conductivity,the observed rise time of lightning radiation field increases obviously,which will affect the error in lightning location by using the method of time lag in arriving peak time,so the relationship formula of rise time and observed distance can be used to calculate the distance of lightning detection or the ground surface conductivity of propagation path.The results also show the lighting magnetic induction intensity amplitude attenuation decays with the ground conductivity decreasing and the observation distance increasing.Lastly,the correction curve was presented for inversion of lightning current after taking ground conductivity situation into the consideration based on the formula commonly used in inverting the strength of lightning current.