詹胜文, 冯义军, 伍兴中, 左雷斌. 中缅油气管道跨越双管同桥的可行性分析[J]. 油气储运, 2011, 30(11): 827-829. DOI: CNKI:13-1093/TE.20110913.1826.014
引用本文: 詹胜文, 冯义军, 伍兴中, 左雷斌. 中缅油气管道跨越双管同桥的可行性分析[J]. 油气储运, 2011, 30(11): 827-829. DOI: CNKI:13-1093/TE.20110913.1826.014
Zhan Shengwen, Feng Yijun, Wu Xingzhong, . Feasibility analysis on the overhead crossing in one pipe-bridge for Sino-Myanmar Oil/Gas Pipelines[J]. Oil & Gas Storage and Transportation, 2011, 30(11): 827-829. DOI: CNKI:13-1093/TE.20110913.1826.014
Citation: Zhan Shengwen, Feng Yijun, Wu Xingzhong, . Feasibility analysis on the overhead crossing in one pipe-bridge for Sino-Myanmar Oil/Gas Pipelines[J]. Oil & Gas Storage and Transportation, 2011, 30(11): 827-829. DOI: CNKI:13-1093/TE.20110913.1826.014

中缅油气管道跨越双管同桥的可行性分析

Feasibility analysis on the overhead crossing in one pipe-bridge for Sino-Myanmar Oil/Gas Pipelines

  • 摘要: 中缅油气管道工程为油气双管并行敷设,管道通过怒江、澜沧江等V形山间峡谷时,需要采用跨越方式通过。针对中缅油气管道双管并行敷设的特点,对跨越处油气管道双管是否同桥进行了论证。介绍了国内外标准对双管同桥布置的要求,列举了国内外双管跨越实例。从结构设计和运营角度对比分析了双管同桥布置与单管分桥布置方案的安全性、经济性、环保性及风险概率,并提出了中缅管道跨越同桥的设计方案,详细介绍了管桥基础、塔架、索系、应力分析、管材、防腐,以及阀室、避雷和预警监测设计。

     

    Abstract: Sino-Myanmar Oil/Gas Pipelines designed are parallelly laid. The pipelines will pass through many V-shaped valleys in Nujiang River, Lancangjiang River, etc., and it is necessary to adopt the overhead crossing method in the pipelines'construction. Based on the parallel laying design principle, the paper discusses the feasibility in sharing the overhead crossing facilities for the two pipelines. The requirement adopted in foreign pipeline projects for overhead crossing with one pipe-bridge is introduced, and the case study is also given. From the viewpoint of design and operation, the issues are analyzed and compared in safety, economy, environment protection and risk probability for the two pipelines in the sharing and one pipeline with the pipe-bridge. Furthermore, the design scenario for the two pipelines'sharing is proposed. The design in the pipe-bridge foundation, tower, cable, stress analysis, pipe material, corrosion control, valve chamber, lightning protection and forewarning system are presented in detail.

     

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