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3-D Lightning Location Solution and Precision Analysis of Cloud Flash 被引量:5
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作者 ZHANG Ping1,2, ZHAO Wenguang2,3?, HU Zhixiang2,3, WEN Yinping2,3 1. School of Architecture and Urban Planning, Huazhong University of Science and Technology, Wuhan 430074, Hubei, China 2. School of Civil Engineering and Mechanics, Huazhong University of Science and Technology, Wuhan 430074, Hubei, China 3. Hubei Key Laboratory of Control Structure, Huazhong University of Science and Technology, Wuhan 430074, Hubei, China 《Wuhan University Journal of Natural Sciences》 CAS 2009年第3期241-244,共4页
Using the spatial coordinates of detection stations and the time of arrival of lightning wave, the observation equations can be expressed. For the large lightning detection network, the least square method is used to ... Using the spatial coordinates of detection stations and the time of arrival of lightning wave, the observation equations can be expressed. For the large lightning detection network, the least square method is used to process the adjustment of observation data to find the most probable value of lightning position, and the result is assessed by the mean error and dilution of precision. Lightning location precision is affected by figure factor. The conclusion can be used in the design of location network, data processing, and data analysis. 展开更多
关键词 3-d lightning location cloud flash detection solution model dilution of precision figure factor
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Analysis of the Initial Stage Intracloud Lightning Using the Pulse Location Technique Based on the Fast Electric Field Change
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作者 王东方 郄秀书 +4 位作者 袁铁 张广庶 张彤 张廷龙 张其林 《Acta meteorologica Sinica》 SCIE 2009年第6期772-781,共10页
Academy of Sciences,Beijing 100029 2 Lanzhou University,Lanzhou 730000 3 Cold and Arid Regions Environmental and Engineering Research Institute, Chinese Academy of Sciences,Lanzhou 730000 4 Nanjing University of Infor... Academy of Sciences,Beijing 100029 2 Lanzhou University,Lanzhou 730000 3 Cold and Arid Regions Environmental and Engineering Research Institute, Chinese Academy of Sciences,Lanzhou 730000 4 Nanjing University of Information Science&Technology,Nanjing 210044 Using both fast and slow electric field change sensors and field mill,multi-station observations on lightning flashes over China inland plateau areas were conducted during the summer of 2004.All of the stations were synchronized by GPS with a time-resolution of±50 ns.Using the different time of arrival(DTOA)and based on the fast electric field change sensor,a lightning radiation location technique was developed.Radiation pulses in the initial stages of five intracloud(IC)lightning discharges which occurred on 20 August were analyzed.The results indicate that the technique developed could effectively locate the lightning radiation sources.Furthermore,the lightning discharges were compared with the Doppler radar data.The results show that the radiation sources were well associated with the storm development.When the storm was at the mature stage with an echo top of about 10.9 km,the radiation sources ranged from 5.2 to 8.3 km above mean sea level;when the storm gradually became weaker,with echo top of about 7.9 km,the radiation sources ranged from 3.0 to 5.9 km.In particular,one of the IC lightning discharges ranged from 3.0 to 4.9 km during the dissipation stage of the storm.The results also indicate that the radiation sources were closely associated with the high reflectivity region(25–50 dBZ)of the storm,which,to some extent,demonstrates the reliability of the location results,thereby showing that multi-station observations of fast electric field change sensors could be a useful tool for monitoring the storm development.Location errors from radiation sources were also compared with the radar data and the results of a simple simulation.It was found that the errors were getting smaller when the radiation sources approached the center of the detection network, and vice versa.Compared with the limited experimental observations,the simulation results were found capable of effectively reflecting the location errors. 展开更多
关键词 thunderstorm intracloud lightning fast electric field change radiation source 3-d location Doppler radar
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青岛沿海地区雷暴过程闪电始发位置的微物理参量特征分析
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作者 张源源 孙豪 +3 位作者 王鹏 孟繁辉 刘钊 栾在茂 《海洋科学》 CAS CSCD 北大核心 2024年第2期58-68,共11页
本文通过低频磁脉冲闪电探测系统和双偏振雷达联合观测结果,针对2019—2020年青岛沿海地区发生的5次雷电灾害天气,研究了雷暴的闪电始发位置与微物理参数之间的关系,结果如下:(1)闪电主要始发于组合反射率大于45 dBz的强回波区,地闪的... 本文通过低频磁脉冲闪电探测系统和双偏振雷达联合观测结果,针对2019—2020年青岛沿海地区发生的5次雷电灾害天气,研究了雷暴的闪电始发位置与微物理参数之间的关系,结果如下:(1)闪电主要始发于组合反射率大于45 dBz的强回波区,地闪的接闪位置距离主雷暴云系可达10~30 km左右。闪电始发区域组合反射率的中位数为55 dBz,液态水含量的中位数为37 kg/m^(2)。(2)闪电始发位置的双偏振雷达水平反射率主要集中于35~45 dBz,差分反射率主要集中在1.5~2.5 dB,相关系数集中于0.97~0.99。大部分雷电始发于0℃等温线和–10℃等温线之间,位于液态水、湿霰和干霰混合相态粒子区。部分雷电过程发生于湿霰区的中上部,这种情况一般差分反射率值很大。(3)在–10~0℃等温层之间存在相关系数大值区且相态粒子为湿霰粒子,说明为过冷水区。过冷水区中极易产生大直径的霰粒,在强上升气流的作用下,大直径霰粒与冰晶碰撞从而极易发生闪电过程。 展开更多
关键词 三维闪电定位 双偏振雷达 微物理特征 相态识别
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基于GDOP的安徽省闪电定位网探测精度分析 被引量:4
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作者 张广元 董德保 +2 位作者 宋佳军 朱亚宗 周先锋 《气象水文海洋仪器》 2022年第1期36-40,共5页
文章基于Matlab软件,建立闪电定位算法和评估因子数学模型,并开发专门的评估软件;通过对比不同仿真条件下GDOP参数的分布,文章探讨了站点的几何关系、中心站位置、基线距离等因素对闪电定位网探测精度的影响,总结出三维闪电定位网组网原... 文章基于Matlab软件,建立闪电定位算法和评估因子数学模型,并开发专门的评估软件;通过对比不同仿真条件下GDOP参数的分布,文章探讨了站点的几何关系、中心站位置、基线距离等因素对闪电定位网探测精度的影响,总结出三维闪电定位网组网原则,完成全省三维闪电定位网方案设计。 展开更多
关键词 闪电定位 GDOP 精度分析 MATLAB 三维组网
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云闪空间定位的三维网格搜索算法研究 被引量:1
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作者 杨惠珍 赵文光 +1 位作者 张萍 张瑞芳 《武汉大学学报(信息科学版)》 EI CSCD 北大核心 2013年第3期370-373,共4页
针对迭代算法用于雷电定位时依赖初始值和易于发散等问题,提出了三维网格搜索算法用于云闪空间定位解算。通过对某雷电探测网的数据进行模拟计算和数值分析,结果表明,只要网格划分得合理和恰当,多级搜索后,计算结果必定趋近于真实解,证... 针对迭代算法用于雷电定位时依赖初始值和易于发散等问题,提出了三维网格搜索算法用于云闪空间定位解算。通过对某雷电探测网的数据进行模拟计算和数值分析,结果表明,只要网格划分得合理和恰当,多级搜索后,计算结果必定趋近于真实解,证明了该方法的有效性和稳健性。 展开更多
关键词 雷电定位 云闪 到达时间 三维网格搜索 代价函数
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Understanding the dynamical-microphysical-electrical processes associated with severe thunderstorms over the Beijing metropolitan region 被引量:2
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作者 Xiushu QIE Shanfeng YUAN +24 位作者 Zhixiong CHEN Dongfeng WANG Dongxia LIU Mengyu SUN Zhuling SUN Abhay SRIVASTAVA Hongbo ZHANG Jingyu LU Hui XIAO Yongheng BI Liang FENG Ye TIAN Yan XU Rubin JIANG Mingyuan LIU Xian XIAO Shu DUAN Debin SU Chengyun SUN Wenjing XU Yijun ZHANG Gaopeng LU Da-Lin ZHANG Yan YIN Ye YU 《Science China Earth Sciences》 SCIE EI CSCD 2021年第1期10-26,共17页
The Dynamical-microphysical-electrical Processes in Severe Thunderstorms and Lightning Hazards(STORM973)project conducted coordinated comprehensive field observations of thunderstorms in the Beijing metropolitan regio... The Dynamical-microphysical-electrical Processes in Severe Thunderstorms and Lightning Hazards(STORM973)project conducted coordinated comprehensive field observations of thunderstorms in the Beijing metropolitan region(BMR)during the warm season from 2014 to 2018.The aim of the project was to understand how dynamical,microphysical and electrical processes interact in severe thunderstorms in the BMR,and how to assimilate lightning data in numerical weather prediction models to improve severe thunderstorm forecasts.The platforms used in the field campaign included the Beijing Lightning Network(BLNET,consisting of 16 stations),2 X-band dual linear polarimetric Doppler radars,and 4 laser raindrop spectrometers.The collaboration also made use of the China Meteorological Administration’s mesoscale meteorological observation network in the Beijing-Tianjin-Hebei region.Although diverse thunderstorm types were documented,it was found that squall lines and multicell storms were the two major categories of severe thunderstorms with frequent lightning activity and extreme rainfall or unexpected local short-duration heavy rainfall resulting in inundations in the central urban area,influenced by the terrain and environmental conditions.The flash density maximums were found in eastern Changping District,central and eastern Shunyi District,and the central urban area of Beijing,suggesting that the urban heat island effect has a crucial role in the intensification of thunderstorms over Beijing.In addition,the flash rate associated with super thunderstorms can reach hundreds of flashes per minute in the central city regions.The super(5%of the total),strong(35%),and weak(60%)thunderstorms contributed about 37%,56%,and 7%to the total flashes in the BMR,respectively.Owing to the close connection between lightning activity and the thermodynamic and microphysical characteristics of the thunderstorms,the lightning flash rate can be used as an indicator of severe weather events,such as hail and short-duration heavy rainfall.Lightning data can also be assimilated into numerical weather prediction models to help improve the forecasting of severe convection and precipitation at the cloud-resolved scale,through adjusting or correcting the thermodynamic and microphysical parameters of the model. 展开更多
关键词 lightning 3D location Dual linear polarimetric Doppler radar Severe thunderstorm lightning data assimilation HAIL Short-term heavy precipitation
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