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Design of coal pillar with roadway driving along goaf in fully mechanized top-coal caving face

机译:煤柱与巷道沿布综采性顶煤落叶散步的煤柱设计

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Small coal pillar with reasonable width plays important roles in not only improving recovery ratio and eliminating dynamic disasters, but also in keeping the stability of entry surrounding rock. In order to analyze reasonable layout of gob-side entry driving in fully mechanized top-coal caving face (FMTC face), numerical simulation, in-situ measurement and theoretical calculation are carried out. The stress redistribution rules of coal mass in dip direction are put forward by metering the stress after coal extraction. At the same time, mechanical characteristics of coal pillars with different widths, 3 m, 5 m, 7 m, 10 m, 15 m and 20 m, respectively, are obtained by analyzing stress field, displacement field and fractured field characteristics. Reasonable width of district sublevel coal pillar is determined by calculating the width of limit equilibrium region and the cracked range of the entry surrounding rock due to mining of adjacent face based on the results of in-situ measurement and numerical simulation. The engineering practice proves that the width of coal pillar is scientific and reliable. It provides a scientific basis for reasonable layout of gates and determining parameters of the coal pillar in FMTC face. It can be favorable to improve maintenance states of entry, and also benefit to improve the recovery in FMTC face, and it provides beneficial lessons for determining reasonable width of gob-side entry driving of other similar conditions.
机译:小型煤柱,合理宽度不仅可以提高恢复比率和消除动态灾害,而且还在保持围岩周围岩石的稳定性方面发挥重要作用。为了分析完全机械化的顶煤落盘(FMTC面)中的GOB侧进入驱动的合理布局,进行数值模拟,原位测量和理论计算。通过在煤提取后测量应力来提出浸煤质量的应力再分配规则。同时,通过分析应力场,位移场和裂缝场特性,分别具有不同宽度,3μm,5m,7m,10μm,15m和20m的煤柱的机械特性。通过基于原位测量结果和数值模拟的结果,通过计算相邻面的挖掘,通过计算相邻面部的宽度的宽度来确定地区散燃柱的合理宽度。工程实践证明了煤柱的宽度是科学和可靠的。它为合理的闸门布局提供了科学依据,并在FMTC面上的煤柱的测定参数。有利的是,改善进入的维护状态,也有利于改善FMTC面部的恢复,并为确定其他类似条件的GOB侧进入驱动的合理宽度提供有益课程。

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