Research on the Application of Prefabricated Load-Bearing Structure in Prefabricated Roadway in Filling Body

Author:

Jiang Ke123ORCID,Ren Gaofeng1ORCID,Sheng Jia234ORCID,Peng Liang23ORCID,Zhu Hao23ORCID,Tan Xinyu123ORCID,Zheng Bokun23,Zhang Congrui1ORCID

Affiliation:

1. School of Resources and Environmental Engineering, Wuhan University of Technology, Wuhan, Hubei 430070, China

2. Changsha Mining Research Institute Co. Ltd., Changsha, Hunan 410012, China

3. State Key Laboratory of Safety Technology for Metal Mines, Changsha, Hunan 410012, China

4. School of Resources Environment and Safety Engineering, Hunan University of Science and Technology, Xiangtan 411201, China

Abstract

The re-excavation roadway in the filling body is a common engineering demand in mines. In order to solve the problem of instability and failure of the filling body caused by the excavation disturbance in the filling body and improve the comprehensive economic benefits of the technology, it is proposed to use the filling body formed by membrane bag filling in the goaf and the steel arch frame to form a prefabricated load-bearing structure, reserve the required roadway space, avoid the safety risks caused by roadway excavation, and reduce the difficulty and cost of roadway support in the later stage. Based on the background of a mine goaf, the mechanical model of the load-bearing structure is established, and the analytical solution of the bearing capacity of the steel arch is obtained. The optimal ratio of the membrane bag filling of the load-bearing structure is obtained by indoor test, and the deformation of the surrounding rock and the distribution range of the plastic zone after the formation of the reserved roadway are numerically simulated and analyzed. The results show that the best cementing material is cement : fly ash of 8 : 2, and the ratio of cement to sand is 1 : 3. The vertical displacement of the roof is 45.1 mm, the vertical displacement of the floor is 5.1 mm, and the horizontal displacement of the left side is 55.5 mm. The load on the load-bearing structure is within the allowable range, and the field monitoring results show that the deformation of the reserved roadway is small. The research results can provide reference for the prefabricated roadway engineering in the filling body.

Funder

National Key Research and Development Program of China

Publisher

Hindawi Limited

Reference19 articles.

1. Thinking and prospect of overall planning for deep metal mine in high stress environment;S. Wu;Journal of China Coal Society,2019

2. Support principle and flexible cable support technology of deep large deformation roadway;N. Ma;Safety Engineering,2023

3. Stress distribution law of surrounding rock bearing structure of broken surrounding rock roadway;W. Peng;Journal of Central South University(Science and Technology),2023

4. Stabilization Mechanism and Safety Control Strategy of the Deep Roadway with Complex Stress

5. Progress and prospects of mining with backfill in metal mines in China

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