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深部巷道围岩在不同应力作用下的变形特征研究
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作者 刘永建 吴春燕 +1 位作者 豆思雨 王嘉乐 《矿业装备》 2023年第8期10-12,共3页
在实际生产中,深部煤矿巷道通常处于高地应力和强动态干扰的典型静动力耦合应力条件下。由于典型静动力耦合应力条件引发的灾害和事故较多,煤矿的安全高效生产受到严重威胁。因此,研究典型静动力耦合应力条件下巷道围岩的变形和破坏特... 在实际生产中,深部煤矿巷道通常处于高地应力和强动态干扰的典型静动力耦合应力条件下。由于典型静动力耦合应力条件引发的灾害和事故较多,煤矿的安全高效生产受到严重威胁。因此,研究典型静动力耦合应力条件下巷道围岩的变形和破坏特性具有重要的实际意义。通过数值模拟研究了不同原位应力场动态荷载条件对围岩的影响,并得出了变形和破坏特性。研究结果有助于理解典型静动力耦合应力条件下巷道变形和破坏的特点,并可用于提供类似地质和岩土工程环境下支护设计和优化的依据。 展开更多
关键词 深部巷道 数值模拟 巷道变形 围岩塑性破坏
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综采面区段煤柱矿压规律与合理宽度研究 被引量:6
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作者 潘黎明 《煤炭技术》 CAS 2020年第5期18-21,共4页
为了掌握综采工作面区段煤柱矿压显现规律,确定煤柱合理宽度,实现安全高效高回收率回采,以黄玉川煤矿4#煤层首采面为工程背景,采用数值模拟、理论分析、应力实测法进行了相关研究。结果表明:①区段煤柱进入采空区前,应力增幅缓慢,塑性... 为了掌握综采工作面区段煤柱矿压显现规律,确定煤柱合理宽度,实现安全高效高回收率回采,以黄玉川煤矿4#煤层首采面为工程背景,采用数值模拟、理论分析、应力实测法进行了相关研究。结果表明:①区段煤柱进入采空区前,应力增幅缓慢,塑性破坏区域宽度一般在2 m;而进入采空区后,煤柱应力增长极快,应力增幅呈现倍数增长,煤柱破坏深度也达到了8 m。由此说明,煤柱支承压力的增幅主要是由于采空区上覆岩层压力造成的,且决定了对煤柱的破坏性作用。②通过理论分析、数值模拟、实测分析3种方法得到的区段煤柱合理宽度,结果相近,具有一定的设计参考价值。 展开更多
关键词 综采面 煤柱宽度 采空区 围岩塑性破坏 应力增幅
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Numerical analysis of deformation and failure characteristics of deep roadway surrounding rock under static-dynamic coupling stress 被引量:20
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作者 WU Xing-yu JIANG Li-shuai +3 位作者 XU Xing-gang GUO Tao ZHANG Pei-peng HUANG Wan-peng 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第2期543-555,共13页
In actual production,deep coal mine roadways are often under typical static-dynamic coupling stress(SDCS)conditions with high ground stress and strong dynamic disturbances.With the increasing number of disasters and a... In actual production,deep coal mine roadways are often under typical static-dynamic coupling stress(SDCS)conditions with high ground stress and strong dynamic disturbances.With the increasing number of disasters and accidents induced by SDCS conditions,the safe and efficient production of coal mines is seriously threatened.Therefore,it is of great practical significance to study the deformation and failure characteristics of the roadway surrounding rock under SDCS.In this paper,the effects of different in-situ stress fields and dynamic load conditions on the surrounding rock are studied by numerical simulations,and the deformation and failure characteristics are obtained.According to the simulation results,the horizontal stress,vertical stress and dynamic disturbance have a positive correlation with the plastic failure of the surrounding rock.Among these factors,the influence of the dynamic disturbance is the most substantial.Under the same stress conditions,the extents of deformation and plastic failure of the roof and ribs are always greater than those of the floor.The effect of horizontal stresses on the roadway deformation is more notable than that of vertical stresses.The results indicate that for the roadway under high-stress conditions,the in-situ stress test must be strengthened first.After determining the magnitude of the in-situ stress,the location of the roadway should be reasonably arranged in the design to optimize the mining sequence.For roadways that are strongly disturbed by dynamic loads,rock supports(rebar/cable bolts,steel set etc.)that are capable of maintaining their effectiveness without failure after certain dynamic loads are required.The results of this study contribute to understanding the characteristics of the roadway deformation and failure under SDCS,and can be used to provide a basis for the support design and optimization under similar geological and geotechnical circumstances. 展开更多
关键词 static-dynamic coupling stress(SDCS) deep roadway surrounding rock stability numerical simulation roadway deformation plastic failure of surrounding rock
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