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Analysis of lightning current characteristics to investigate lightning strike damages to energy pipeline

机译:分析雷电流特性以调查雷击对能源管道的损害

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Australia is one of the most lightning prone area on earth. Lightning strikes have been identified as one of the most common cause of energy pipeline damage in Australia. Therefore, a suitable protection schemes and mitigation strategies against lighting strike damage is very important for Australian pipeline industry. There are a number of research on lighting protection of establishment such as, power systems, buildings, and telecommunications systems, however, very few publications could be found which discuss about protection of pipeline from lightning strike. Assessment of effects in buried pipeline, due to lighting strikes is important. Existing models do not account adequately the effect of the characteristics of soil breakdown channels intercepted by the buried object. This paper aims to investigate the characteristics of lightning current on metal object under the soil of strike point so that lighting attachment to energy pipeline could be understand and a protection technique could be developed. Along with lightning current characteristics, lightning attachment process, distribution method, soil resistivity, propagation of lightning current in soil with a buried pipeline, pipeline electrical properties and other related areas and technologies is explored. The study shows that though there are some research on characteristics of induced on simple buried structures like narrow telephone cable or residential gas pipe, but no substantial research have been done on large comparatively complex structures like buried energy pipelines. Also dynamic behavior of soil and the object to be protected not been considered in protections schemes and experiments.
机译:澳大利亚是地球上最容易闪电的地区之一。雷击已被确定为澳大利亚能源管道损坏的最常见原因之一。因此,对于澳大利亚管道行业而言,合适的保护方案和减轻雷击损害的缓解策略非常重要。关于电力系统,建筑物和电信系统等设施的照明保护的研究很多,但是,很少有出版物讨论保护管道免受雷击的问题。评估由于雷击而对地下管道的影响至关重要。现有模型没有充分考虑埋藏物体拦截的土壤破裂通道特征的影响。本文旨在研究雷击点土壤下金属物体上的雷电流的特性,以便理解对能量管道的照明附着并开发保护技术。结合雷电流特性,探讨了雷电的附着过程,分布方法,土壤电阻率,雷电流在地下管道中的传播,管道的电特性以及其他相关领域和技术。研究表明,尽管对狭窄的电话电缆或民用燃气管道等简单的地下结构的感应特性进行了一些研究,但对大型的相对复杂的结构(如地下能源管道)却没有进行实质性研究。在保护方案和实验中也未考虑土壤和被保护物体的动态行为。

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