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隧道建设(中英文) ›› 2021, Vol. 41 ›› Issue (7): 1150-1158.DOI: 10.3973/j.issn.2096-4498.2021.07.008

• 研究与探索 • 上一篇    下一篇

复杂地下水环境下膏溶角砾岩隧道围岩力学性质劣化研究

刘志国1, 江松2, *, 黄明2, 陈泽峰3, 蓝兴斌2   

  1. 1. 中铁十一局集团第五工程有限公司, 重庆 400037 2. 福州大学土木工程学院,福建 福州 350116 3. 中冶集团武汉勘察研究院有限公司, 湖北 武汉 430080
  • 出版日期:2021-07-20 发布日期:2021-07-29
  • 作者简介:刘志国(1981—),男,重庆人,2004年毕业于湖南科技大学,采矿工程专业,本科,高级工程师,现主要从事高速铁路隧道施工管理工作。E-mail: 35014162@qq.com。*通信作者: 江松, E-mail: jiangsongfzu@163.com。

A Law for Degradation of Mechanical Properties of Gypsum Breccia Surrounding Tunnels in a Complex Groundwater Environment

LIU Zhiguo1, JIANG Song2, *, HUANG Ming2 ,CHEN Zefeng3, LAN Xingbin2   

  1. (1. The 5th Engineering Co., Ltd. of China Railway 11th Bureau Group, Chongqing 400037, China; 2. College of Civil Engineering, Fuzhou University, Fuzhou 350116, Fujian, China; 3. Wuhan SurveyingGeotechnical Research Institute Co., Ltd. of MCC, Wuhan 430080, Hubei, China)

  • Online:2021-07-20 Published:2021-07-29

摘要: 为研究复杂地下水环境下隧道膏溶角砾岩的劣化特征,以山西某隧道工程存在的膏溶角砾岩为研究对象,考虑流速作用(01020 L/h),开展不同循环次数(13610次)的干湿循环试验,系统分析膏溶角砾岩在不同流速及不同干湿循环次数下的溶蚀和吸水行为的演变规律; 通过单轴和三轴压缩试验,进一步探究膏溶角砾岩在不同流速及不同干湿循环次数下的力学参数劣化规律。研究结果表明: 1)干湿循环作用与水流共同导致了膏溶角砾岩的劣化,干湿循环对膏溶角砾岩的劣化作用主要在于降低颗粒的联结程度,而流速则会加剧膏溶角砾岩的溶蚀行为,并侵蚀剥离岩样表面的松散颗粒; 2)膏溶角砾岩各力学指标(单轴抗压强度、弹性模量、内摩擦角、黏聚力)随着流速与干湿循环次数的增加呈下降趋势,当流速为20 L/h时,经历10次干湿循环后,膏溶角砾岩的单轴抗压强度降低了72.86%,弹性模量降低了75.67%,内摩擦角降低了70.69%,黏聚力降低了57.58%,其力学参数的劣化程度由高到低依次为弹性模量、单轴抗压强度、内摩擦角以及黏聚力。

关键词: 隧道, 膏溶角砾岩, 地下水环境, 干湿循环, 力学性质, 劣化规律

Abstract: To study the degradation characteristics of the gypsum breccia that surrounds tunnels in a seasonally supplemented groundwater environment, a case study on gypsum breccia is conducted for a tunnel project in Shanxi. Wettingdrying cycle tests for 1, 3, 6, and 10 cycles are carried out considering the effect of flow rates of 0, 10, and 20 L/h. The law describing the corrosion and water absorption behavior of gypsum breccia under the action of the wettingdrying cycles at different flow rates is systematically analyzed in this paper. Based on the results of uniaxial and triaxial compression tests, the law describing the degradation of the mechanical parameters of gypsum breccia under different wettingdrying cycles and flow rates is then explored in more detail. The results show the following. (1) The wettingdrying cycle and water flow cause degradation of the gypsum breccia. The effect of the wettingdrying cycle on the gypsum breccia mainly involves a reduction in the degree of connection between particles, whereas the water flow aggravates the corrosion of the gypsum breccia and erodes the loose particles on the surface of the rock. (2) The mechanical indices of gypsum breccia including the uniaxial compressive strength, elastic modulus, friction angle, and cohesive strength show a downward trend as the flow rate and the number of wettingdrying cycle increase. When the flow rate is 20 L/h, after 10 wettingdrying cycles, the uniaxial compressive strength of the gypsum breccia is reduced by 72.86%, the elastic modulus is reduced by 75.67%, the friction angle is reduced by 70.69%, and the cohesion strength is reduced by 57.58%. The elastic modulus is degraded the most, followed by the uniaxial compressive strength, friction angle, and cohesion.

Key words: tunnel, gypsum breccia, groundwater environment, wettingdrying cycle, physical properties, degradation , law