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隧道建设(中英文) ›› 2022, Vol. 42 ›› Issue (7): 1146-1155.DOI: 10.3973/j.issn.2096-4498.2022.07.003

• 研究与探索 • 上一篇    下一篇

圆形竖井钢波纹板-模袋混凝土支护结构现场试验研究

张明聚1, 韩忆萱1, 李鹏飞1 *, 郭彩霞1, 吴爱国2   

  1. 1. 北京工业大学 城市与工程安全减灾教育部重点实验室, 北京 100124; 2.鹤壁相桦建筑工程设备租赁有限公司, 河南 鹤壁 458000
  • 出版日期:2022-07-20 发布日期:2022-08-04
  • 作者简介:张明聚(1962—),男,河南南阳人,2000年毕业于清华大学,土木工程专业,博士,教授,主要从事隧道及地下工程的教学与科研工作。Email: zhangmj@bjut.edu.cn。*通信作者: 李鹏飞, Email: lpf@bjut.edu.cn。

Field Experimental Study on SteelCorrugated PlateMold Bag Concrete Supporting Structure of Circular Shaft#br#

ZHANG Mingju1, HAN Yixuan1, LI Pengfei1, *, GUO Caixia1, WU Aiguo2   

  1. (1. Key Laboratory of Urban Security and Disaster Engineering of Ministry of Education, Beijing University of Technology, Beijing 100124, China; 2. Hebi Xianghua Construction Equipment Leasing Co., Ltd., Hebi 458000, Henan, China)
  • Online:2022-07-20 Published:2022-08-04

摘要: 为解决喷射混凝土工作环境差、能耗高以及施工中跑浆、漏浆等问题,提出钢波纹板结合模袋混凝土的新型支护方案。依托圆形竖井,采用倒挂井壁逆作施工法展开现场试验,分析灌注压力的变化规律及其影响。结果表明: 1)模袋混凝土可充填开挖面与钢波纹板之间的构造间隙及预留空间,与钢波纹板形成具有一定强度和刚度的组合结构,能够维持开挖面稳定、抵抗开挖面变形,施工工艺具有可行性; 2)根据现场监测结果可知,在混凝土灌注过程中,模袋内混凝土流动性良好,能充分填充模袋,注满后,灌注压力逐渐消散,且钢波纹板产生的环向应变很小,支护结构在工作状态下均匀受力; 3)试验选用的土工布均具有透气、透水、不透浆的特性,能有效解决喷射混凝土施工存在的跑浆、漏浆等问题,但材料特性和加工性能略有差异; 4)钢波纹板与模袋混凝土结合形成的新型支护结构,为隧道等地下工程支护技术提供了新思路,具有重要意义。

关键词: 地下工程, 圆形竖井, 钢波纹板, 模袋混凝土, 倒挂井壁逆作法, 支护结构, 工艺试验

Abstract:  Shotcrete construction has some drawbacks, such as poor working environment, high energy consumption, slurry running, and slurry leakage. Thus, a novel support scheme by integrating a steelcorrugated plate combined with a mold bag concrete is proposed. A field experiment is conducted on a circular shaft using the inverted hanging shaft wall reverse construction method, and the change law of perfusion pressure and its influence are analyzed. The following are the results obtained in this study. (1) The mold bag concrete can fill the structural gap and reserved space between the excavation surface and steelcorrugated plate to form a composite structure with certain strength and stiffness, which can maintain the stability and resist the deformation of the excavation face. (2) The onsite monitoring results show that in the process of concrete pouring, the concrete in the mold bag has good fluidity and can completely fill the mold bag. Then, the pouring pressure dissipates gradually, and the circumferential strain produced by the steelcorrugated plate is small. The supporting structure is subjected to uniform force under such working conditions. (3) The geotextiles selected in the test have the characteristics of air and water permeability, which can effectively solve the problems of slurry running and leakage during shotcrete construction. (4) The proposed supporting structure provides innovative ideas for tunneling and similar underground engineering support technology, which is of great significance.

Key words: underground engineering, circular shaft, corrugated steel plate, mold bag concrete, inverted hanging shaft wall reverse, supporting structure, process test