雷电电流模拟在避雷器和材料烧蚀试验中的应用

Yuwei He, Z. Fu, A. Jiang
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引用次数: 7

摘要

大约70%的云对地闪电是多次闪电,每次闪电平均约有4次闪电。在自然闪电中发现的主要雷电电流成分包括第一次回程电流、随后回程电流、中间电流和长持续电流。为了工程应用,如避雷器试验和材料烧蚀试验,开发了多种类型的单脉冲和多脉冲浪涌电流发生器。本文综述了此类试验的波形和幅度要求以及开发此类发生器的相应技术。分析了现有浪涌电流发生器的不足,介绍了一种利用多波形多脉冲脉冲电流发生器(MWMP ICG)模拟全尺寸雷电电流效应的新技术。文中还讨论了该技术的潜在应用前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On the simulation of lightning current for the application in lightning arrester and material ablation tests
Approximately 70% of cloud-to-ground lightning flashes are multi-stroke flash with an average stroke number of about four per flash. The main lightning current components found in natural lightning include first return stroke current, subsequent return stroke currents, intermediate currents and long-duration continuing current. For the purpose of engineering applications such as lightning arrester tests and material ablation tests, many types of single and multi-pulse surge current generators are developed. This paper reviews the waveform and amplitude requirements for such tests and corresponding techniques for developing those generators. The deficiencies of the existing surge current generators are analyzed and a new technique for full-scale lightning current effect simulation with a multi-waveform multi-pulse impulse current generator (MWMP ICG) is introduced. The potential application of such MWMP ICG is also discussed.
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