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大倾角综采支架失稳特征与智能调控策略 被引量:1
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作者 赵亮 《煤矿机械》 2023年第11期81-83,共3页
采用力学分析的方法,从大倾角液压支架失稳机理出发,探讨了大倾角情况下液压支架在工作面推进过程中临界失稳角的计算方法,总结了支架2种失稳形式,模拟了支架受偏载情况下各部位受力情况及位移。研究结果表明:大倾角综采工作面液压支架... 采用力学分析的方法,从大倾角液压支架失稳机理出发,探讨了大倾角情况下液压支架在工作面推进过程中临界失稳角的计算方法,总结了支架2种失稳形式,模拟了支架受偏载情况下各部位受力情况及位移。研究结果表明:大倾角综采工作面液压支架主要失稳形式为倾倒和下滑失稳,当煤层倾角大于支架失稳临界角时,液压支架存在失稳风险;对顶梁施加1.1倍偏载额定工作阻力载荷后,液压支架顶梁应力最大处可达148.02MPa,顶梁变形量为7.44mm。基于此建立大倾角液压支架智能监测调控系统模型,设计了以侧护板和平衡千斤顶为主动件的智能监测调控系统模型,实现对液压支架的智能调控,达到发现和预防液压支架失稳的目的。 展开更多
关键词 智能开采 大倾角工作面 液压支架失稳 智能监测 智能调控
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基于“支架—围岩”关系的大倾角工作面液压支架稳定性分析 被引量:1
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作者 王海涛 《自动化应用》 2019年第7期145-146,共2页
针对大倾角综采工作面的液压支架失稳难题,首先对2313工作面进行现场调研,分析其具体地质生产条件下的液压支架失稳特性,然后建立液压支架—围岩耦合模型并分析其耦合特性,进而提出液压支架稳定性控制对策,高度重视液压支架—围岩的协... 针对大倾角综采工作面的液压支架失稳难题,首先对2313工作面进行现场调研,分析其具体地质生产条件下的液压支架失稳特性,然后建立液压支架—围岩耦合模型并分析其耦合特性,进而提出液压支架稳定性控制对策,高度重视液压支架—围岩的协同控制,在控制液压支架及围岩稳定性方面取得了较为成功的经验,安全生产得到保障。 展开更多
关键词 支架-围岩”耦合 大倾角综采 液压支架定性 液压支架失稳
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Stability of roof structure and its control in steeply inclined coal seams 被引量:21
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作者 Li Xiaomeng Wang Zhaohui Zhang Jinwang 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2017年第2期359-364,共6页
To improve the effectiveness of control of surrounding rock and the stability of supports on longwall topcoal caving faces in steeply inclined coal seams, the stability of the roof structure and hydraulic supports was... To improve the effectiveness of control of surrounding rock and the stability of supports on longwall topcoal caving faces in steeply inclined coal seams, the stability of the roof structure and hydraulic supports was studied with physical simulation and theoretical analysis. The results show that roof strata in the vicinity of the tail gate subside extensively with small cutting height, while roof subsidence near the main gate is relatively assuasive. With increase of the mining space, the caving angle of the roof strata above the main gate increases. The characteristics of the vertical and horizontal displacement of the roof strata demonstrate that caved blocks rotate around the lower hinged point of the roof structure, which may lead to sliding instability. Large dip angle of the coal seam makes sliding instability of the roof structure easier.A three-hinged arch can be easily formed above both the tail and main gates in steeply inclined coal seams. With the growth in the dip angle, subsidence of the arch foot formed above the main gate decreases significantly, which reduces the probability of the roof structure becoming unstable as a result of large deformation, while the potential of the roof structure's sliding instability above the tail gate increases dramatically. 展开更多
关键词 Steeply inclined coal seam Inclined masonry structure Overlying strata Structure instability
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