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隧道建设(中英文) ›› 2025, Vol. 45 ›› Issue (S2): 125-139.DOI: 10.3973/j.issn.2096-4498.2025.S2.011

• 研究与探索 • 上一篇    下一篇

新建地铁下穿影响下既有地铁变形研究——以北京18个新建地铁下穿工程为例

房倩1, 尤麒兆1, 王剑晨2, 王赶1, 柯成建3, 茹振华1   

  1. (1. 北京交通大学 教育部城市地下工程重点实验室, 北京 100044; 2. 北京城建设计发展集团股份有限公司, 北京 100037; 3. 中交第二公路勘察设计研究院有限公司, 湖北 武汉 430056)
  • 出版日期:2025-12-20 发布日期:2025-12-20
  • 作者简介:房倩(1981—),男,山东淄博人,2010年毕业于北京交通大学,桥梁与隧道工程专业,博士,教授,主要从事隧道工程方面的教学与科研工作。 E-mail: qfang@ bjtu.edu.cn。

Deformation of Existing Metro Structures Induced by Newly Built Metro Undercrossing: A Case Study of 18 Newly Built Metro Projects in Beijing

FANG Qian1, YOU Qizhao1, WANG Jianchen2, WANG Gan1, KE Chengjian3, RU Zhenhua1   

  1. (1. Key Laboratory of Urban Underground Engineering of Ministry of Education, Beijing Jiaotong University, Beijing 100044, China; 2. Beijing Urban Construction Design & Development Group Co., Ltd., Beijing 100037, China; 3. CCCC Second Highway Consultants Co., Ltd., Wuhan 430056, Hubei, China)
  • Online:2025-12-20 Published:2025-12-20

摘要: 在新建地铁下穿既有线工程中,新建地铁施工对既有地铁结构的变形特征及其安全状态具有显著影响。为系统揭示北京地区新建地铁下穿施工对既有地铁结构变形特征及安全状态的影响规律,基于北京市18个典型下穿工程案例,开展多案例归纳与分析研究。通过汇总各工程案例的基本概况及沉降变形监测数据,梳理北京地区下穿工程中既有结构控制措施的发展脉络。根据控制对象不同,将既有结构的沉降控制措施归纳为3类: 控制变形源头、控制变形传递路径、控制敏感结构。结合各案例中既有结构的变形特征,进一步将其结构类型划分为整体式、管片式和管节式3类,并对其沉降模式进行比较分析。研究结果表明: 采用高斯函数可较好地拟合整体式和管片式结构的沉降曲线,而管节式结构受节间变形缝影响显著,沉降曲线形态与前两者明显不同,其中整体式结构的拟合效果最佳。在此基础上,提出2种用于既有结构安全性评价的指标,其中基于高斯函数计算的最大拉应变更能有效地反映既有结构的受力与安全状态。

关键词: 地铁施工, 新建地铁下穿既有线, 沉降, 高斯函数, 安全性评估

Abstract: The construction of newly built metro structures beneath existing ones has a pronounced influence on the deformation behavior and safety of existing metro structures. However, most existing studies concentrate on individual case projects, with limited systematic or generalized insights. To address this issue, the authors investigate 18 representative undercrossing projects in Beijing through a multi-case synthesis and comparative analysis. Project backgrounds and settlement monitoring data are compiled to trace the evolution of deformation control measures for existing structures. Based on their control targets, these measures are classified into three categories: controlling deformation sources, transmission paths, and sensitive structures. Considering deformation characteristics, existing structures are further categorized into three types—single tunnel section, segmental tunnel lining, and multiple tunnel sections—and their settlement patterns are comparatively analyzed. Results show that the settlement curves of single tunnel section and tunnel lining type can be well described by Gaussian functions, while multiple tunnel sections exhibit distinct patterns due to joint deformation, with the single tunnel section type showing the best fitting performance. Based on these findings, two safety evaluation indicators are proposed, among which the maximum tensile strain derived from Gaussian fitting provides a more effective measure of the stress state and safety condition of existing structures.

Key words: metro construction, newly built metro undercrossing existing metro, settlement, Gaussian function, safety assessment