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1.
利用2008—2010年在广州从化人工触发闪电试验中观测到的闪电通道底部电流、近距离电场以及近距离磁场数据资料,对人工触发闪电M过程的电流和电磁场特征及相关性进行了分析。统计分析结果显示:M分量电场波形持续时间和10%~90%上升时间几何平均值分别为0.49 ms和0.12 ms;电流波形持续时间、10%~90%上升时间和电流变化的几何平均值分别为0.53 ms, 0.11 ms和0.34 kA;磁场波形持续时间、10%~90%上升时间和磁场变化的几何平均值分别为0.65 ms, 0.16 ms和2.76×10-5T。此外,M分量的电流、电场及磁场波形间存在一定的相互关系。相关分析结果表明:M分量的电磁场与电流资料在峰值幅度上具有较显著相关性,几何形状也较为一致,利用电磁场资料反演M分量的电流波形具有可行性。  相似文献   

2.
火箭触发闪电通道的亮度特征分析   总被引:2,自引:0,他引:2  
利用成像速率为2000幅/s的高速摄像资料,对采用不同触发方式的两次负极性闪电进行了对比分析,结果表明:空中触发方式的上行正先导的起始速度比经典触发方式的低一个量级左右,而前者的触发高度要比后者的高;闪电通道中金属导线汽化部分的余晖时间可达160—170 ms,相对来说,空气离化部分的亮度信息更能真实体现闪电通道中的电流特性。依据闪电通道亮度变化特性的差异,并结合电场变化的观测,可以将回击之后的过程分为3种类型,没有M分量的为连续衰减型,有M分量的可分为独立型和延续型两种,能够与不同类型的延续电流波形相对应。总体上看,有M分量的回击间隔比没有M分量的要长,几何平均值分别为77 ms和37 ms,有M分量的初始连续电流也会比没有M分量的持续更长的时间。回击和M分量发生前闪电通道的相对亮度存在明显的差异,回击前闪电通道的相对亮度很弱,甚至观测不到任何发光现象,而M分量发生前闪电通道仍有较强的发光。  相似文献   

3.
两种类型M分量物理特征和机制对比   总被引:1,自引:1,他引:0       下载免费PDF全文
综合分析人工触发闪电通道底部的电流数据和电场变化数据,获得对M分量的新认识。M分量的幅值、上升时间、半峰值宽度、转移电荷量的几何平均值分别为301 A,341 μs,662 μs,0.207 C。但发现有两种类型的M分量,其统计特征和分布特征均体现了较大差别。第1类M分量幅度较小,半峰值宽度较大,上升时间较长;第2类M分量则幅度较大,半峰值宽度较小,上升时间较短,两类M分量和回击的时间间隔有较大差异。采用双波放电模型,通过设定不同入射电流波速度和反射电流波速度,对两类M分量进行从电流到电场的反演。结果表明:当模拟电场和测量电场比较一致时,第1类M分量的入射速度和反射速度的比值大于第2类M分量,即两类M分量的放电机制具有一定差异。  相似文献   

4.
分析了2019年夏季在广州从化人工引雷试验场获取的14次人工触发闪电通道底部电流数据,以有无回击(RS)和初始连续电流(ICC)持续时间长短2个标准对数据进行分类,研究不同触发闪电和不同放电阶段的差异和规律。研究表明:相比无回击的触发闪电,产生回击的触发闪电具有更大的先驱放电脉冲(PCP)及初始先驱放电脉冲(IPCP)的平均峰值电流、更多的IPCP总体转移电荷量、更大的ICC平均电流和总体转移电荷量以及更长的ICC持续时间;初始连续电流持续时间是回击平均峰值电流大小、首次继后回击转移电荷量大小和首次继后回击峰值电流大小的重要影响因素,且长初始连续电流的触发闪电对应的PCP及IPCP平均峰值电流也更大、平均转移电荷量也更多;PCP和IPCP平均峰值电流与ICC持续时间相关性最强,是决定ICC放电持续时间的重要因素,未能产生初始连续电流的PCP脉冲簇其平均转移电荷量小于初始先驱放电脉冲簇,其转化的关键阈值之一是平均转移电荷量大于25.91 μC。  相似文献   

5.
人工触发闪电先驱电流脉冲波形特征及模拟   总被引:1,自引:1,他引:0       下载免费PDF全文
2010—2014年夏季广州野外雷电试验基地采用了两种引雷火箭开展人工引雷试验,通过对25次经典人工触发闪电电流资料的分析,进一步证实了当火箭携带铜线时先驱电流脉冲 (precursor current pulse) 为双极性振荡型,火箭携带钢丝时先驱电流脉冲为单极性,其中单极性脉冲电流峰值、10%~90%上升时间、波形宽度和转移电荷量的几何平均值分别为26 A,0.33 μs,2.3 μs,27 μC,双极性脉冲相应的波形参数几何平均值分别为67 A,0.24 μs,2.1 μs,54 μC。双极性脉冲电流峰值的几何平均值接近是单极性的2.6倍,而波形持续时间和上升时间的几何平均值与单极性相近。利用传输线模型,模拟铜线通道底部电流波形呈双极性振荡型,而钢丝通道底部电流波形呈单极性,这与实际测量的结果比较一致,推测这两种电流波形可能是传输线特性阻抗不同所导致,在传输线顶端由先导起始放电产生的电流脉冲应为单极性。  相似文献   

6.
利用2005-2008年期间在山东开展的人工触发闪电试验中所观测到的通道底部电流、不同距离垂直电场及高速摄像光学资料,对人工触发闪电10次回击之后的33次M分量电流波形进行了分析.结果表明,典型的M分量电流波形具有较对称的结构特征,峰值电流的几何平均值为743 A(标准偏差为0.55);波形10%~90%上升时间的几何...  相似文献   

7.
山东人工引发雷电综合观测实验及回击电流特征   总被引:3,自引:2,他引:1  
山东人工引发雷电实验 (SHATLE) 自2005年开始, 六年来共成功引发负极性雷电22次, 包含大电流回击过程88次, 实验获取了包括雷电放电通道底部电流、近距离电磁场、 高速摄像等在内的高质量同步观测资料。对36次实测回击电流的统计分析表明, 回击峰值电流的几何平均值为12.1 kA, 最大值为41.6 kA, 最小值为4.4 kA。回击电流波形的半峰值宽度范围在1~68 μs之间, 电流10%~90%峰值的上升时间几何平均值为1.9 μs, 中和电荷量为0.86 C, 作用积分(action integral, 或称比能量) 为2.6 ×103A2?s。人工触发闪电峰值电流约16.5 kA的回击在30 m处产生的电场变化可达56.0 kV/m, 60 m处的磁场几何平均值为52 μT。一些强烈的M分量可以具有与回击相当的电流峰值和中和电荷量。人工引雷初始阶段上行正先导的发展速度约为0.96×105 m/s。  相似文献   

8.
基于自主研发的闪电连续干涉仪,对2019年6月11日在中国气象局雷电野外科学试验基地广州从化人工引雷试验场成功触发的一次多回击闪电放电全过程进行观测,结合通道底部电流数据和电场变化数据,共同揭示触发闪电全放电过程:连续干涉仪能够定位到最小为8 A的不连续的先驱电流脉冲辐射信号,初始先驱电流脉冲(IPCP)的平均转移电荷量约为先驱电流脉冲(PCP)的2倍;上行正先导连续发展后为初始连续电流(ICC)过程,最初正流光通道以105 m·s-1量级的速度继续发展延伸,之后出现反冲先导放电;在ICC阶段出现的经典M分量,可由向前的106 m·s-1量级速度的正流光(先导)产生,也可由已有通道头部产生的反冲先导产生,且整个M分量过程中,多个反冲先导维持了放电过程的持续;之后的回击间过程以反冲先导为主要放电形式,回击电流脉冲之前存在多次反冲先导过程,但多数未发展到接地通道,只处于企图先导阶段,直至成功的先导回击产生;而前两次回击具有超短的时间间隔,约为4.5 ms,这是由于两次回击前的先导来源于云内不同分支的反冲先导过程。  相似文献   

9.
一次人工引发闪电初始电流及其电磁场变化特征   总被引:1,自引:0,他引:1  
研制了近距离闪电磁场变化测量系统,并在2005年夏季山东滨州的人工引发闪电试验中,获得了闪电电流和距闪电通道60 m处的1μs时间分辨率的电磁场变化同步观测资料。本文详细分析了一次人工引发闪电放电初始阶段的电流及近距离电磁场。本次引发闪电中火箭拖带的导线底端通过一段5 m左右的尼龙线与引流杆相接,这段空气间隙击穿放电所产生的电流为720A,对应的60 m处电场和磁感应强度变化分别为0.38 kV/m和11.26μT。对同步资料的进一步分析表明,人工引发闪电上行正先导电流脉冲时间间隔为18.0~25.0μs,平均峰值电流为23.0A,变化范围为16.9~41.0A;单个先导过程转移电荷量的平均值为84.3μC,变化范围为57.8~141.0μC。60 m处先导电场峰值和磁感应强度峰值的平均值分别为16.7 V/m和0.3μT,变化范围分别为8.7~28.2V/m和0.116~0.544μT。先导电流峰值Ip(A)与其产生的磁感应强度峰值B(μT)之间满足Ip=61.9B 2.56。  相似文献   

10.
广州高建筑物雷电观测站光电同步观测系统于2017年6月16日记录到一次峰值电流达+141 kA的单回击正地闪触发两个并发上行闪电过程。利用高速摄像、普通摄像和电场变化数据分析了触发型上行闪电的始发特征和机理。结果表明:正地闪回击后约0.8 ms内,在距正地闪接地点约3.9 km的广州塔(高600 m)和4.1 km的东塔(高530 m)分别有上行闪电始发。正地闪回击过程中和大量正电荷以及之后可能有云内负先导朝高塔方向快速伸展造成塔顶局部区域的电场发生突变是两个上行闪电激发的原因。两个上行闪电在353 ms内发生7次回击,其中6次在广州塔上,仅1次在东塔上,且广州塔回击峰值电流平均值(-21.4 kA)约为东塔回击峰值电流(-7.3 kA)的3倍,表明广州塔上行闪电通道可能比东塔上行闪电通道伸展至分布范围更广、电荷量(或电荷密度)更大的负电荷区。两个上行闪电先导的二维速率变化范围为9.4×104~1.8×106 m·s-1,平均值为6.9×105 m·s-1。  相似文献   

11.
一次多回击自然闪电的高速摄像观测   总被引:5,自引:3,他引:2       下载免费PDF全文
2006年8月1日在广东省从化市利用成像率为5000幅/s的高速摄像系统观测得到了一次包含有13个回击过程的自然负地闪, 其梯级先导的传播速度为106 m/s的量级; 一次企图先导的传播速度随高度的降低而减小; 一次直窜先导的传播速度随高度的降低而增加。有3次继后回击相对积分亮度的峰值大于首次回击相对积分亮度的峰值。研究发现:此次自然闪电的继后回击及紧跟其后的连续电流过程的发光总量与该次继后回击之前闪电通道的截止时间有关, 较大的发光总量对应于较长的截止时间, 较小的发光总量对应于较短的截止时间, 但两者没有固定的比例关系。  相似文献   

12.
通过对1993年7月27日的人工触发闪电电流、跨步电压的直接测量结果的分析发现,在正电场下触发的慢型放电过程由连续电流和双极性的电流脉冲过程组成,其放电特性与雷暴的电特性有关。闪电电流最大值为1.2kA,持续时间为25ms,中和电荷量为8.9C。跨步电压与电流的测量结果相一致,是一种间接测量电流的方法。  相似文献   

13.
This work analyses the waveshapes of continuing currents and parameters of M-components in positive cloud-to-ground (CG) flashes through high-speed GPS synchronized videos. The dataset is composed of only long continuing currents (with duration longer than 40 ms) and was selected from more than 800 flashes recorded in São José dos Campos (45.864°W, 23.215°S) and Uruguaiana (29.806°W, 57.005°S) in Southeast and South of Brazil, respectively, during 2003 to 2007 summers. The videos are compared with data obtained by the Brazilian Lightning Location System (BrasilDAT) in order to determine the polarity of each flash and select only positive cases. There are only two studies of waveshapes of continuing currents in the literature. One is based on direct current measurements of triggered lightning, in which four different types of waveshapes were observed; and the other is based on measurements of luminosity variations in high-speed videos of CG negative lightning, in which besides the four types above mentioned two additional types were observed. The present work is an extension of the latter, using the same method but now applied to obtain the waveshapes of positive CG lightning. As far as the authors know, this is the first report on M-components in positive continuing currents. We also have used the luminosity-versus-time graphs to observe their occurrence and measure some parameters (duration, elapsed time and time between two successive M-components), whose statistics are presented and compared in detail to the data for negative flashes. We have plotted a histogram of the M-components elapsed time over the total duration of the continuing current for positive flashes, which presented an exponential decay (correlation coefficient: 0.83), similar to what has been observed for negative flashes.  相似文献   

14.
A comparison is made of the high-speed (2000 fps) lightning between two techniques. The analysis shows (UPL) in altitude-triggered negative lightning (ATNL) photographic records in rocket-triggered negative that: the initial speed of upward positive leader is about one order of magnitude less than that in classically triggered negative lightning (CTNL), while the triggering height of ATNL is higher than that of CTNL; the afterglow time of metal-vaporized part of the lightning channel can endure for about 160-170 ms, thus the luminosity of the air-ionized part can reflect the characteristics of the current in the lightning channel better than that of the metal-vaporized part. According to the different characteristics of the luminosity change of the lightning channel, together with the observation of the electric field changes, three kinds of processes after return-stroke (RS) can be distinguished: the continuous decaying type without M component, the isolated type and the continuing type with M component, corresponding to different wave shapes of the continuous current. The geometric mean of the interval of RS with M component is 77 ms, longer than that (37 ms) of RS without M component. And the initial continuous current (ICC) with M component also has a longer duration compared to the ICC without M component. The distinction in the relative luminosity between the lightning channel before RS and that before M component is obvious: the former is very weak or even cannot be observed, while the latter is still considerably luminous.  相似文献   

15.
In this study we analyze the effects of continuing current initiated by strokes following a new channel to ground in multiple stroke flashes using high-speed video records, electric field measurements from a fast antenna and lightning detection network data. We observed that the long continuing current initiated by a stroke that follows a new channel also obeys the pattern in the initiation of long continuing current suggested by Rakov and Uman [Rakov, V.A., Uman, M.A., 2003. Lightning: Physics and Effects, 687pp., Cambridge Univ. Press, New York.]. We also verify that the statement of Rakov and Uman [Rakov, V.A. and Uman, M.A., 1990. Some properties of negative cloud-to-ground lightning flashes versus stroke order, Journal of Geophysical Research. 95, 5447–5453.] reporting that: “...strokes initiating long continuing currents tend to have lower initial electric field peak than regular strokes” is valid for strokes that create a new channel to ground and are followed by long continuing current (CC). Apparently the reduction of peak current value (Ip) when the stroke is followed by a long CC is stronger than the Ip increase that is commonly observed when strokes follow a new channel. We also find that the “exclusion zone” proposed by Saba et al. [Saba, M.M.F., Pinto, O. Jr., Ballarotti, M.G., 2006a. Relation between lightning return stroke peak current and following continuing current, Geophysical Research Letters 33, L23807, doi:10.1029/2006GL027455.] is valid for new channels initiating CC, and finally we verify that a number of strokes in the same channel larger than four or the existence of a long CC current do not always consolidate the channel in a multiple stroke flash.  相似文献   

16.
2006—2011年广州人工触发闪电   总被引:1,自引:1,他引:0       下载免费PDF全文
2006—2011年夏季在广州野外雷电试验基地开展了广东综合闪电观测试验 (GCOELD)。试验期间,针对人工触发闪电进行了近距离声、光、电、磁特征等综合测量,对自动气象站电源线和信号线上产生的感应电压特征进行了观测和分析,并对广东省地闪定位网的探测效率和定位精度与人工触发闪电进行了比对和校验。试验结果表明:人工触发闪电回击峰值电流范围为-31.93~-6.67 kA,回击电流波形的半峰宽度的范围为6.18~74.19 μs,10%—90%的上升时间范围为0.24~2.25 μs。触发闪电的上行正先导的发展速度在104~105 m/s量级;人工触发闪电的回击过程在架空电源线路 (1200 m长,2 m高) 上产生的感应过电压可达十几千伏;广东电网闪电定位系统对人工触发闪电事件的探测效率为95%,平均定位误差为759 m,闪电定位系统反演得到的电流峰值与实际测量的电流峰值平均相对偏差为16.3%。  相似文献   

17.
Lightning can be seen as a large-scale cooperative phenomenon, which may evolve in a self-similar cascaded way. Using the electric field waveforms recorded by the slow antenna system, the mono- and multifractal behaviors of 115 first return strokes in negative cloud-to-ground discharges have been investigated with a wavelet multiresolution based multifractal method. The results show that the return stroke process, in term of its electric field waveform, has apparent fractality and strong degree of multifractality. The multifractal spectra obtained for the 115 cases are all well fitted to a modified version of the binomial cascade multifractal model. The width of the multifractal spectra, which measure the strength of multifractality, is 1.6 on average. The fractal dimension of the electric field waveforms ranges from 1.2 to 1.5 with an average of 1.3, a similar value to the fractal dimension of the lightning channel obtained by others. This suggests that the lightning-produced electric fields may have the same fractal dimension as its channel. The relationship between the peak current of a return stroke and the charge deposition in its channel is also discussed. The results suggest that the wavelet and scaling analysis may be a powerful tool in interpretation of the lightning-produced electric fields and therefore in understanding lightning.  相似文献   

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