期刊文献+

Testing of Lightning Protective System of a Residential Structure: Comparison of Data Obtained in Rocket-triggered Lightning and Current Surge Generator Experiments

Testing of Lightning Protective System of a Residential Structure: Comparison of Data Obtained in Rocket-triggered Lightning and Current Surge Generator Experiments
下载PDF
导出
摘要 We present a comparison of data obtained during testing of lightning protective system of a residential structure in rocket-triggered lightning experiment at the International Center for Lightning Research and Testing(ICLRT)at Camp Blanding,Florida,and current surge generator experiment at Rzeszow University of Technology in Poland.Three different configurations of LPS were tested in Poland with the dc grounding resistances of the entire system 4.09 Ω(LPS 1a),1.65 Ω(LPS 1b),and 2.88 Ω(LPS 2).For LPS 1a with three ground rods the value of the peak current entering the electrical circuit neutral was about 56% of the injected current peak,and for LPS 1b with two additional ground rods and two 5 m long buried horizontal conductors it was about 16%.For LPS 2 with five ground rods interconnected by a buried loop conductor this ratio was 21%.The current waveshapes in the ground rods differed from the injected current waveshapes and the current waveshapes in other parts of the test system,especially,for poorer-grounding LPS 1a.The surge-generator results are consistent with those of triggered-lightning experiments at Camp Blanding,Florida(DeCarlo et al.,2008 [2]). We present a comparison of data obtained during testing of lightning protective system of a residential structure in rocket-triggered lightning experiment at the International Center for Lightning Research and Testing(ICLRT)at Camp Blanding,Florida,and current surge generator experiment at Rzeszow University of Technology in Poland.Three different configurations of LPS were tested in Poland with the dc grounding resistances of the entire system 4.09 Ω(LPS 1a),1.65 Ω(LPS 1b),and 2.88 Ω(LPS 2).For LPS 1a with three ground rods the value of the peak current entering the electrical circuit neutral was about 56% of the injected current peak,and for LPS 1b with two additional ground rods and two 5 m long buried horizontal conductors it was about 16%.For LPS 2 with five ground rods interconnected by a buried loop conductor this ratio was 21%.The current waveshapes in the ground rods differed from the injected current waveshapes and the current waveshapes in other parts of the test system,especially,for poorer-grounding LPS 1a.The surge-generator results are consistent with those of triggered-lightning experiments at Camp Blanding,Florida(DeCarlo et al.,2008 [2]).
出处 《高电压技术》 EI CAS CSCD 北大核心 2008年第12期2575-2582,共8页 High Voltage Engineering
关键词 居民区 雷电保护系统 试验 电流冲击发生器 triggered lightning lightning protective system current surge generator lightning current
  • 相关文献

参考文献6

  • 1Rakov V A, Uinan M A, Fernandez M I, et al. Direct lightning strikes to the lightning protection system of a residential building: triggered-lightning experiments[J]. IEEE Trans on Power Delivery, 2002, 17(2): 575-586.
  • 2DeCarlo B A, Rakov V A, Jerauld J, et al. Distribution of currents in the lightning protective system of a residential building- Part Ⅰ: triggered-lightning experiments [J]. IEEE Trans on Power Delivery, 2008, 23(4) : 2439-2446.
  • 3Li L, Rakov V A. Distribution of currents in the lightning protective system of a residential building Part Ⅱ: numerical modeling[J]. IEEE Trans on Power Delivery, 2008, 23(4): 2447- 2455.
  • 4Rakov V A. Lightning discharges triggered using rocket-and- wire techniques[C]// Recent Res Devel Geophysics, Research Signpost. India, 1999.
  • 5Maslowski G. Investigation of currents injected by a surge generator into the lightning protective system of a small residential structure[C]// 2008 URSI General Assembly. Chicago, 2008.
  • 6IEC-62305-1 Protection against lightning, Part 1: general principles[S], 2006.

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部