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首页> 外文期刊>Trends in Ecology & Evolution >Wall Fusion of Buried Pipelines Due to Direct Lightning Strikes: Field, Laboratory, and Simulation Investigation of the Damaging Mechanism
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Wall Fusion of Buried Pipelines Due to Direct Lightning Strikes: Field, Laboratory, and Simulation Investigation of the Damaging Mechanism

机译:埋藏管道的墙壁融合因直接雷击:损伤机制的现场,实验室和模拟调查

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摘要

Wall fusion of buried pipelines can occur if the driving voltage and available current is sufficiently high. For example, it can occur from direct lightning strikes to earth, close to the pipelines' routing. However, not all factors for defining the energy discharge needed to fuse the pipe wall are thoroughly investigated or understood. This paper enriches the ongoing research activities in an attempt to understand such detrimental damages. In particular, the paper formulates its research contents around a documented wall fusion incident on an underground gas transmission system, due to a nearby direct lightning strike. The investigation embraces field, laboratory, and modeling activities to provide insights on the damaging mechanism. Of particular importance in understanding this mechanism is the influence of soil ionization. To this end, a model is developed to investigate the soil-ionized flow of the lightning discharge current-into the pipeline's metal wall, through existing coating defects-thus revealing its detrimental effect.
机译:如果驱动电压和可用电流足够高,则可能会出现埋地管道的墙壁融合。例如,它可以从直接闪电撞到地球,接近管道的路由。然而,没有针对熔化管壁所需的能量放电的所有因素进行彻底研究或理解。本文丰富了正在进行的研究活动,以试图了解此类不利的损害。特别是,由于附近的直接雷击,本文围绕入射在地下燃气传动系统上的记录壁融合器周围的研究内容。调查包括领域,实验室和建模活动,为破坏性机制提供见解。理解这种机制特别重要是土壤电离的影响。为此,开发了一种模型,以通过现有的涂层缺陷来研究雷电放电电流的土壤离子流量 - 进入管道的金属壁 - 因此露出其有害效果。

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