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Support-surrounding rock relationship and top-coal movement laws in large dip angle fully-mechanized caving face 被引量:6

Support-surrounding rock relationship and top-coal movement laws in large dip angle fully-mechanized caving face
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摘要 When mining the fully-mechanized longwall caving face along strike, the unstable equipment, the low top-coal recovery ratio and the difficulty in controlling surrounding rock may occur due to large dip angle. Considering the effects of strike angle on support stability, the ‘‘support-surrounding rock"mechanical models of support topple and support slip were established in this paper. On the basis, the influencing factors of support stability were analyzed and the technical measures of controlling support and surrounding rock stability were put forward. Then the loose particles simulation experiment was conducted to analyze the impacts of caving directions and methods on the top-coal recovery in large dip angle fully-mechanized caving face. Finally, the ‘‘upward sequence and double-openings doublerounds" caving technology was determined. The research results are of great scientific significance and practical values to improve large dip thick seam mining technology. When mining the fully-mechanized longwall caving face along strike, the unstable equipment, the low top-coal recovery ratio and the difficulty in controlling surrounding rock may occur due to large dip angle. Considering the effects of strike angle on support stability, the "support-surrounding rock" mechanical models of support topple and support slip were established in this paper. On the basis, the influencing factors of support stability were analyzed and the technical measures of controlling support and surrounding rock stability were put forward. Then the loose particles simulation experiment was conducted to analyze the impacts of caving directions and methods on the top-coal recovery in large dip angle fully-mechanized caving face. Finally, the "upward sequence and double-openings doublerounds" caving technology was determined. The research results are of great scientific significance and practical values to improve large dip thick seam mining technology.
出处 《International Journal of Mining Science and Technology》 EI CSCD 2018年第3期533-539,共7页 矿业科学技术学报(英文版)
基金 provided by the National Key Basic Research Program of China (973 Program) (No. 2015CB251600) the Qing Lan Project the Priority Academic Program Development of Jiangsu Higher Education Institutions (PAPD)
关键词 Large dip angle Thick seam Fully-mechanized caving Working resistance Top-coal movement 岩石稳定性 机械化 采矿技术 法律 运动 机械模型 影响因素
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