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Controlling the effect of a distant extremely thick igneous rock in overlying strata on coal mine disasters 被引量:8

Controlling the effect of a distant extremely thick igneous rock in overlying strata on coal mine disasters
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摘要 Based on theoretical analysis, similarity simulation tests, numerical simulation analysis and field observations, we analyzed rock collapse and rules of fraction evolution of overlying rocks and studied the rules in controlling the effect of an extremely thick igneous rock, found above a main mining coal seam in an area prone to coal mine disasters in the Haizi Coal Mine. The results show that this igneous rock, called a "main key stratum", will not subside nor break for a long time, causing lower fractures and bed separations not to close. The presence of igneous rock plays an important role in rock bursts, mine floods, gas outburst and surface subsidence in coal mines. By analyzing the rules in controlling the effect of this igneous rock, we provide useful references for safety and high efficiency mining in coal mines under special geological conditions. Based on theoretical analysis, similarity simulation tests, numerical simulation analysis and field observations, we analyzed rock collapse and rules of fraction evolution of overlying rocks and studied the rules in controlling the effect of an extremely thick igneous rock, found above a main mining coal seam in an area prone to coal mine disasters in the Haizi Coal Mine. The results show that this igneous rock, called a "main key stratum", will not subside nor break for a long time, causing lower fractures and bed separations not to close. The presence of igneous rock plays an important role in rock bursts, mine floods, gas outburst and surface subsidence in coal mines. By analyzing the rules in controlling the effect of this igneous rock, we provide useful references for safety and high efficiency mining in coal mines under special geological conditions.
作者 WANG Liang
出处 《Mining Science and Technology》 EI CAS 2010年第4期510-515,共6页 矿业科学技术(英文版)
基金 the National Basic Research Program of China (No.2005CB221503) the National Natural Science Foundation of China (Nos.70533050 and 50674089) the National Foundation for the Youth of China (No.50904068) the Research Fund for the Youth of China University of Mining & Technology (No.OY091223)
关键词 extremely thick igneous rock SEPARATION rock burst mine flood gas outburst surface subsidence 煤矿灾害 岩层控制 火成岩 相似模拟试验 数值模拟分析 特殊地质条件 成岩作用 矿井灾害
作者简介 Corresponding author. Tel: 86 13952117141 E-mail address: liangw1982@ 126.com doi: 10,1016/S1674-5264(09)60234-9
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