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DESIGN OF PARALLEL PIPELINES IN SECOND WEST-EAST NATURAL GAS PIPELINE PROJECT

机译:西气东输二线工程并行管道设计

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The Second West-East Gas Pipeline(2nd WEP) Project, consisting of one trunk line and eight branches, has a total length of 8,704 km and a designed annual transportation capacity of 30 billion cubic meters. The outside diameter of trunk line is 1,219 mm (48"). According to the plan, 2nd WEP will parallel with several existing or planning pipelines in long distance, some will even be located in rocky area. However, there are neither requirements of separation distance nor other related provisions of parallel pipelines in current domestic regulation and codes in China. It is an urgent critical problem to reasonably design, construct and operate multiple pipelines in same corridor. In order to design 2nd WEP in parallel with other existing and planning pipelines, a series of technical studies were carried out. This paper describes the main work. First of all is the literature review, including regulation, standards, codes etc. and similar work on parallel pipelines and applicable practices in other countries. Second, for the primary concern-separation distance, the main factors are considered. Then, the computational results of some 2nd WEP paralleling with other pipelines based on the impact of the failure of natural gas pipeline to adjacent pipelines are introduced. Third, the experiments and some related researches in rocky areas where 2nd WEP parallels with existing pipelines are introduced. Forth, analysis of Direct Current (DC) stray current interference resulted from Cathodic Protection (CP) Systems located along each parallel pipeline is briefly introduced. Then is the mitigation and monitoring requirements for unbounded (separate) CP system. According to the works above together with engineering practices as well as experiences, the design guideline of parallel pipelines is established. When 2nd WEP parallels with other pipelines not locating in rocky areas, the reasonable separation distance is based on integrated considerations of adjacent pipeline's survival in the event of failure of gas transmission pipeline, easiness to construct, less CP interferences, adequate space requirements for maintenance and repair. For other paralleling cases, engineering requirements are established separately. This guideline has been applied in design of parallel pipelines and provides management requirements for future operation in 2nd WEP project.
机译:西气东输第二工程(第二次WEP)由一条干线和八个分支组成,总长8704公里,设计年运输能力为300亿立方米。干线的外径为1,219毫米(48英寸)。根据计划,第二WEP将与多条现有的或规划中的管道平行长距离,其中一些甚至位于多岩石的区域。但是,没有分离的要求现行国内法规和规程中平行管线的距离或其他相关规定,合理设计,建造和运营同一走廊中的多条管线是紧迫的关键问题,以便与其他现有管线和规划管线并行设计第二个WEP首先,对文献进行综述,包括法规,标准,规范等,以及其他国家关于并行管道和适用实践的类似工作。主要关注点-分离距离,考虑主要因素,然后,基于impac的一些第二WEP与其他管道并行的计算结果介绍了天然气管道到相邻管道的故障t。第三,介绍了第二次WEP与现有管道平行的岩石地区的实验和相关研究。第四,简要介绍了沿每条平行管道的阴极保护(CP)系统对直流(DC)杂散电流干扰的分析。然后是对无限制(独立)CP系统的缓解和监视要求。根据以上工作,结合工程实践和经验,建立了并行管道的设计准则。当第二WEP与其他不在岩石区的管道平行时,合理的间隔距离是基于综合考虑因素,例如在输气管道发生故障,施工容易,CP干扰较少,维护和维护所需空间足够的情况下,相邻管道的生存能力。修理。对于其他并行情况,则分别建立工程要求。该指南已应用于并行管道的设计中,并为第二个WEP项目的未来运行提供了管理要求。

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