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Assessment and analysis of strata movement with special reference to rock burst mechanism in island longwall panel 被引量:3

Assessment and analysis of strata movement with special reference to rock burst mechanism in island longwall panel
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摘要 This study presents a novel approach using theoretical analysis to assess the risk of rock burst of an island longwall panel that accounts for the coupled behavior of stress distribution and overlying strata movement. The height of destressed zone(HDZ) above the mined panel was first determined based on the strain energy balance in an underground coal mining area. HDZ plays a vital role in accurately determining the amount of different loads being transferred towards the front abutment and panel sides. Subsequently, based on the load transfer mechanisms, a series of formulae were derived for the average static and dynamic stresses in the island pillar through theoretical analysis. Finally, the model was applied to determining the side abutment stress distribution of LW 3112 in the Chaoyang Coal Mine and the results of ground subsidence monitoring were used to verify the predicted model. It can be concluded that the proposed computational model can be successfully applied to determining the safety of mining in island longwall panels. This study presents a novel approach using theoretical analysis to assess the risk of rock burst of an island longwall panel that accounts for the coupled behavior of stress distribution and overlying strata movement. The height of destressed zone(HDZ) above the mined panel was first determined based on the strain energy balance in an underground coal mining area. HDZ plays a vital role in accurately determining the amount of different loads being transferred towards the front abutment and panel sides. Subsequently, based on the load transfer mechanisms, a series of formulae were derived for the average static and dynamic stresses in the island pillar through theoretical analysis. Finally, the model was applied to determining the side abutment stress distribution of LW 3112 in the Chaoyang Coal Mine and the results of ground subsidence monitoring were used to verify the predicted model. It can be concluded that the proposed computational model can be successfully applied to determining the safety of mining in island longwall panels.
作者 ZHU Guang-an DOU Lin-ming CAO An-ye CAI Wu WANG Chang-bin LIU Zhi-gang LI Jing 朱广安;窦林名;曹安业;蔡武;王常彬;刘志刚;李静
出处 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第12期2951-2960,共10页 中南大学学报(英文版)
基金 Project(2017CXNL01) supported by the Fundamental Research Funds for the Central Universities,China
关键词 ISLAND LONGWALL PANEL OVERBURDEN structure HEIGHT of destressed zone stress distribution rock BURST risk island longwall panel overburden structure height of destressed zone stress distribution rock burst risk
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