Author:
Yan Lianghuan,Chang Jucai,Shi Wenbao,Wang Tuo,Qiao Longquan,Guo Yijun,Wang Hongda
Abstract
AbstractIn order to control the strong ageing creep and large deformation of deep soft rock roadway effectively, with the 61–71 track on the uphill of the mining area in Suzhou, Anhui as the research background, the triaxial creep test of mudstone was conducted using the TYJ-1500 M rock mechanics testing system. The creep deformation and failure characteristics of mudstone were analyzed. Additionally, the creep deformation characteristics of deep soft rock roadways were obtained through FLAC3D numerical simulation experiment, and the control techniques for deep soft rock roadway was proposed. The results showed that the axial strain and lateral strain of the specimen were mainly instantaneous strain and creep strain under triaxial stress conditions, and the both confining pressure and the axial pressure have a significant impact on the deformation and creep failure strength of the specimen. Under the condition of high ground stress and complex geological structure, the high stress concentration of roadway roof and floor and two bottom angles is the main cause of creep failure of soft rock roadway, and the large degree of surrounding rock fragmentation and unreasonable support mode reduce the bearing capacity of surrounding rock and aggravate the creep failure of roadway. The 'anchor net cable shotcrete + floor and two corners in floor bolt-grouting + deep and shallow hole grouting + secondary reinforcement support' combined support method was proposed and industrially tested, with average deformation of the roof, floor, and two sidewalls being 111.9 and 62.5 mm, respectively, representing 13.2 and 10.3% of the deformation under the original support scheme.
Funder
National Natural Science Foundation of China
Outstanding Research and Innovation Team
the Anhui University Scientific Research Key
Publisher
Springer Science and Business Media LLC
Reference45 articles.
1. Cao JC, Zhang N, Wang SY et al (2020) Physical model test study on support of super pre-stressed anchor in the mining engineering. Eng Failure Analy 118:104833
2. Chang JC, Qi C, Xiong TG (2023) Study on pressure relief control technology of surrounding rock around the staggered roof roadway in a deep longwall face. J Mining Safety Eng 40(02):215–223
3. Chen XY, Wang XF, Zhang DS et al (2021) Creep and control of the deep soft rock roadway (dsrr): insights from laboratory testing and practice in ping ding shan mining area. Rock Mechan Rock Eng (prepublish). https://doi.org/10.1007/s00603-021-02670-1
4. Ding Z, Zhang QM, Wang EY et al (2021) Numerical simulation of the influence on creep characteristics about roadway stability in deep surrounding rock. Chin J Underg Space Eng 17(S1):404–410+432
5. Du BJ, Chang CY, Wu FF et al (2020) Deformation mechanism and control technology of roadway in deep mine with high stress and weak surrounding rock. J Mining Safety Eng 37(06):1123–1132