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隧道建设(中英文) ›› 2025, Vol. 45 ›› Issue (9): 1711-1718.DOI: 10.3973/j.issn.2096-4498.2025.09.008

• 研究与探索 • 上一篇    下一篇

模块化混凝土综合管廊结构受力性能

李泽垚1, 陈盛扬1, 江佳斐1, 李亚2, 薛伟辰1, *   

  1. (1. 同济大学土木工程学院, 上海 200092; 2. 上海师范大学建筑工程学院, 上海 201418)
  • 出版日期:2025-09-20 发布日期:2025-09-20
  • 作者简介:李泽垚(2002—),男,陕西西安人,同济大学土木工程专业在读硕士,研究方向为预制装配式混凝土结构。E-mail: 1341544331@qq.com。*通信作者: 薛伟辰, E-mail: xuewc@tongji.ed.cn。

Structural Performance of Modular Concrete Utility Tunnels

LI Zeyao1, CHEN Shengyang1, JIANG Jiafei1, LI Ya2, XUE Weichen1, *   

  1. (1. College of Civil Engineering, Tongji University, Shanghai 200092, China; 2. College of Civil Engineering, Shanghai Normal University, Shanghai 201418, China)
  • Online:2025-09-20 Published:2025-09-20

摘要: 为研究预应力筋设计参数、轴压比、后浇混凝土厚度等关键参数对模块化混凝土双舱综合管廊结构整体受力性能的影响,采用ABAQUS有限元软件建立单舱管廊有限元模型并通过试验验证该模型的合理性。在此基础上建立混凝土双舱综合管廊的整体结构模型,开展有限元参数分析,主要参数包括截面平均预压应力(0.1、0.2、0.3 MPa)、侧壁轴压比(0、0.05、0.10)、中壁轴压比(0、0.1、0.2)、预应力筋布置方式及后浇混凝土厚度(20、30、40、50 mm)等。研究结果表明: 1)截面平均预压应力的提升对结构延性有显著影响,与截面平均预压应力为0.1 MPa相比,截面平均预压应力为0.2 MPa和0.3 MPa的结构延性提升约8.3%和13.3%; 2)轴压力对结构的承载力有一定影响,当轴压比为0.05和0.10时,整体结构的承载力相比无轴压力结构提升约5.0%和10.4%; 3)截面平均预压应力不变的情况下,顶板多设置预应力筋可以提高结构的延性,底板多设置预应力筋对结构的延性产生不利影响; 4)后浇混凝土厚度对结构的受力性能影响不大,差别在2%以内。

关键词: 混凝土综合管廊, 有限元分析, 模块化, 整体结构, 静力性能, 极限承载力

Abstract: Herein, the effects of prestressed reinforcement design parameters, axial compression ratio, and post-cast concrete thickness on the overall mechanical performance of the structure of a concrete modular double-cabin utility tunnel are investigated. A finite element model of the single-cabin tunnel is developed using ABAQUS finite element software. Based on this model, a structural model of the concrete double-cabin utility tunnel is established, and a parametric finite element analysis is conducted. The key parameters include the average sectional precompression stress (0.1, 0.2, and 0.3 MPa), sidewall axial compression ratio (0, 0.05, and 0.10), midwall axial compression ratio(0, 0.1, and 0.2) prestressed tendon arrangement, and post-cast concrete thickness (20, 30, 40, and 50 mm). The main findings are as follows: (1) An increase in average sectional precompression stress significantly enhances the structural ductility. Compared with an average sectional precompression stress of 0.1 MPa, the ductility improves by approximately 8.3% and 13.3% at 0.2 MPa and 0.3 MPa, respectively. (2) Axial pressure influences the structural bearing capacity. When the axial compression ratio is 0.05 and 0.10, the overall bearing capacity increases by approximately 5.0% and 10.4%, respectively, relative to the structure without axial pressure. (3) Under constant average sectional precompression stress, increasing the prestressed tendons in the top slab improves structural ductility, whereas increasing the prestressed tendons in the bottom slab reduces it. (4) The thickness of post-cast concrete has a limited effect on structural performance, with an improvement of no more than 2%.

Key words: concrete utility tunnel, finite element analysis, modular structure, overall performance, static behavior, ultimate bearing capacity