土工基础 ›› 2025, Vol. 39 ›› Issue (6): 965-971.

• 专题论述 • 上一篇    下一篇

中粗砂地层双线钢顶管穿越高压燃气管线变形影响研究

刘锴1,邱慧君1,陈雪华2,王志晖3,高伟3,梁东海3,周丽红2   

  1. (1.广州市自来水有限公司,广州 510600;2.广州金土岩土工程技术有限公司,广州 510610;
    3.广州北江原水供应有限公司,广州 510800)
  • 收稿日期:2025-08-31 修回日期:2025-10-15 出版日期:2025-12-31 发布日期:2026-01-31
  • 作者简介:刘锴(1979-),男,工程师,研究方向为城乡市政水基础设施、城市水安全、未来城市给排水系统等施工、设计。

Deformation Impact of Double Steel Pipe Jacking Through Medium-Coarse Sand Stratum Crossing High-Pressure Gas Pipeline

LIU Kai1, QIU Huijun1, CHEN Xuehua2, WANG Zhihui3, GAO Wei3, LIANG Donghai3, ZHOU Lihong2   

  1. (1.Guangzhou Water Supply Co. Ltd., Guangzhou 510600;
    2.Guangzhou Jintu Geotechnical Engineering Co. Ltd., Guangzhou 510610;
    3.Guangzhou Beijiang Raw Water Supply Co. Ltd., Guangzhou 510800)
  • Received:2025-08-31 Revised:2025-10-15 Online:2025-12-31 Published:2026-01-31

摘要: 为研究中粗砂地层双线钢顶管平行顶进施工对邻近高压燃气管线的影响,以广州北江引水工程为背景,通过数值模拟、理论计算和现场实测的方法,分析了双线顶管穿越过程中燃气管线的变形规律,主要结论如下:①双线顶管施工产生的相互作用导致管线位移呈现显著叠加特征,竖向位移最大值出现在双管贯通阶段;②双线钢顶管施工引起管线的横向位移可忽略;③基于Peck理论修正公式计算的管线最大沉降为3.29 mm,数值模拟值为2.75 mm,现场实测值2.9 mm,三者具有良好的一致性,且均小于设计值10 mm,证明研究方法的可靠性和实用性。研究成果构建了砂性地层顶管管线相互作用的理论分析框架,提出的管线变形预测方法可为类似工程提供参考。

关键词: 中粗砂地层, 钢顶管双线顶进, 高压燃气管线, 数值模拟, Peck修正公式, 现场实测

Abstract: To study the influence of parallel jacking construction of double steel pipe jacking on adjacent high-pressure gas pipelines in medium-coarse sand strata, the Beijiang Water Diversion Project in Guangzhou is presented in this paper as a case history. The deformation pattern of gas pipelines during the crossing process of double pipe jacking is analyzed by using numerical simulation, theoretical calculation and field measurements. The main conclusions are as follows: (1) The interaction of double pipe jacking construction leads to significant superposition characteristics of pipeline displacement, and the maximum vertical displacement appears in the double penetration stage. (2) The lateral displacement of the pipeline caused by the construction of the double steel pipe jacking can be ignored; (3) The maximum settlement of the pipeline calculated based on the Peck correction formula is 3.29 mm, which is in good agreement with the numerical simulation value of 2.75 mm and the field measured value of 2.9 mm. All of them are less than the design allowable value of 10mm, which proves the reliability and practicability of the research method. The research results construct the theoretical analysis framework of pipe jacking interaction in sandy strata, and the proposed pipeline deformation prediction method can provide reference for similar projects.

Key words: Medium-Coarse Sand Stratum, Double Steel Pipe Jacking, Gas Pipelines, Numerical Simulation, Peck Correction Formula, Field Measurement

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