A hierarchical roof control and pressure relief method for Gob-side Entry Retaining with Compound Roof

Author:

Dong Yu1

Affiliation:

1. Shandong Technology and Business University

Abstract

Abstract

Gob-side entry retaining is effective for preventing gas accumulation, extracting pressure relief gas, and removing gas from the goaf. This study, based on the No. 312 mining area of Longtan coal mine, aims to clarify roof cutting and pressure relief foundations, calculate key parameters, and propose a roof control method. Using field detection, theoretical analysis, and numerical simulation, the dynamic response of roof drilling and fracture mechanics of hard rock strata were examined. Results indicate that the hard rock stratum dictates the pressure relief mode and difficulty. The failure zone distribution in the hard rock stratum is directly influenced by roof cutting borehole density. Consequently, pressure relief methods, key parameters, and roof control measures under different roof conditions were identified. Engineering applications and monitoring show that the hierarchical roof control and pressure relief method ensures rock stability and significantly enhances pressure relief and roadway retention efficiency.

Publisher

Research Square Platform LLC

Reference21 articles.

1. Dufour, F. The Costs and Implications of Our Demand for Energy: A Comparative and Comprehensive Analysis of the Available Energy Resources: How Fossil Fuels Have Created an Energy Crisis/Exploring Our Alternatives/The Future of Energy. 2018.

2. Coal mine solid waste backfill process in China: Current status and challenges;Bo L;Sustainability,2023

3. Stability control of a goaf-side roadway under the mining disturbance of an adjacent coal working face in an underground mine;Yang H;Sustainability,2019

4. Failure mechanism and stability control of surrounding rock in mining roadway with gentle slope and close distance;Wu X;Eng. Fail. Anal.,2023

5. A case study on control technology of surrounding rock of a large section chamber under a 1200-m deep goaf in Xingdong coal mine;Xie S;China. Eng. Fail. Anal.,2019

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