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Siting Transmission Lines Adjacent to Underground Pipelines

机译:与地下管线相邻的选址传输线

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Common corridor utility construction has become a common practice in the United States due to many factors including urban congestion, convenience, and cost. However, there are hidden dangers in doing so. Federal regulations require O&G pipeline operators to apply effective dielectric coatings to the pipeline's exterior that is supplemented with cathodic protection. Thus the pipeline becomes the secondary of an air core transformer. Depending on the geometry of the parallelism, lethal voltages and currents may be induced to the pipeline. Additional problems or concerns include damage to coatings, corrosion of the: pipe at holidays in the coating, damage to the pipe wall via arc burn, and the possibility of fire or explosion in the event of a through the wall arc burn. All of these undesirable events have occurred on pipelines in the past. This paper describes the electro-physics of the various phenomena involved with common corridor. Various mitigation schemes are presented. A strong case is made for Induced AC mitigation studies before the power transmission line route is established and the common corridor geometry is finalized.
机译:由于包括城市拥挤,便利和成本在内的许多因素,普通走廊公用设施的建设已成为美国的普遍做法。但是,这样做存在隐患。联邦法规要求O&G管道运营商在管道外部应用有效的介电涂层,并辅以阴极保护。因此,管道成为空芯变压器的次级。根据并行性的几何形状,可能会向管道感应致命的电压和电流。其他问题或担忧还包括:涂层损坏,涂层在假日休假时腐蚀管道,通过电弧燃烧损坏管道壁以及在通过壁上电弧燃烧的情况下起火或爆炸的可能性。过去,所有这些不良事件都发生在管道上。本文描述了与公共走廊有关的各种现象的电物理。提出了各种缓解方案。在建立输电线路路线并最终确定公共走廊的几何形状之前,有必要对诱导交流缓解进行研究。

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