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多层急倾斜煤岩层中的集中煤仓三维有限元仿真分析
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作者 李永和 王更雨 汉宁明 《煤炭学报》 EI CAS CSCD 北大核心 1999年第2期137-141,共5页
以窑街矿务局三矿多层急倾斜煤岩层中的煤仓与巷道交叉处复杂结构为研究对象,应用三维非平行岩层的有限元模型和CAD仿真技术,对该煤仓各典型部位的内力和变形进行了系统的研究,得到了许多可视化非常直观的计算结果,这对煤仓或交... 以窑街矿务局三矿多层急倾斜煤岩层中的煤仓与巷道交叉处复杂结构为研究对象,应用三维非平行岩层的有限元模型和CAD仿真技术,对该煤仓各典型部位的内力和变形进行了系统的研究,得到了许多可视化非常直观的计算结果,这对煤仓或交叉处采取进一步的维护和加固具有重要的指导意义. 展开更多
关键词 急倾斜煤岩层 集中 有限元 仿真分析
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急倾斜煤层小阶段放顶煤采煤方法的实践与探讨
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作者 龙卿吉 《矿业科学技术》 1997年第3期10-13,共4页
本文简述了急倾斜煤层小阶段放顶采煤方法特点,以及该采煤方法在安源煤矿应用过程中的支护形式,放顶煤方法,提高回采率措施等实践经验,提出了安全生产方面的改进方法及措施。
关键词 急倾斜煤 放顶 水平分层
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急倾斜煤储层水力压裂裂缝扩展研究
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作者 康俊强 简阔 +3 位作者 傅雪海 申建 王一兵 段超超 《煤矿安全》 CAS 2024年第11期49-60,共12页
由于埋深急剧变化,急倾斜储层煤层气井排采范围内上倾方向与下倾方向(简称“上倾与下倾”)应力变化大,压裂裂缝扩展不同于水平或近水平储层。基于准南阜康西区急倾斜储层现场压裂数据,分析了裂缝扩展过程中井底压力变化和裂缝形态特征,... 由于埋深急剧变化,急倾斜储层煤层气井排采范围内上倾方向与下倾方向(简称“上倾与下倾”)应力变化大,压裂裂缝扩展不同于水平或近水平储层。基于准南阜康西区急倾斜储层现场压裂数据,分析了裂缝扩展过程中井底压力变化和裂缝形态特征,并利用有限元方法研究了急倾斜储层水力压裂过程中的裂缝扩展特征,阐明了倾角(应力梯度)对煤储层裂缝扩展的影响。结果表明:基于上倾与下倾的应力和裂缝扩展特征,可将急倾斜储层划分为浅部急倾斜储层,中部急倾斜储层和深部急倾斜储层;浅部急倾斜储层(垂向应力小于水平应力)裂缝扩展分为裂缝向上倾扩展-裂缝停止扩展-裂缝向下倾扩展3个阶段;中部急倾斜储层(上倾垂向应力小于水平应力,下倾垂向应力大于水平应力)裂缝先向上倾扩展,随后裂缝沿上倾边界及垂向应力大于水平应力处转向垂直于储层倾向方向;深部急倾斜储层(垂向应力大于水平应力)裂缝垂直于倾向方向扩展;随着储层倾角增大,浅部储层上倾扩展速率增大,而下倾降低;中部储层则裂缝逐渐由沿倾向方向扩展转向垂向于倾向方向;急倾斜储层上倾与下倾裂缝扩展差异主要是不同埋深下应力变化引起的破裂压力差异,使裂缝先沿应力低的优势通道扩展。 展开更多
关键词 层气 水力压裂 裂缝扩展 应力激变 急倾斜煤储层
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急倾斜坚硬煤层开采防水煤岩柱留设方法
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作者 魏二兴 《企业技术开发(中旬刊)》 2013年第11期179-180,共2页
文章综合分析福建省高陂井田急倾斜煤层开采的实际特点,就开采急倾斜坚硬煤层防水煤岩柱留设方法进行总结与分析,提出预防措施,从而减少或杜绝采掘工作面水害事故的发生。
关键词 倾斜坚硬层隔水岩柱留设
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An improved influence function method for predicting subsidence caused by longwall mining operations in inclined coal seams 被引量:10
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作者 Yi Luo 《International Journal of Coal Science & Technology》 EI 2015年第3期163-169,共7页
Prediction of surface subsidence caused by longwall mining operation in inclined coal seams is often very challenging. The existing empirical prediction methods are inflexible for varying geological and mining conditi... Prediction of surface subsidence caused by longwall mining operation in inclined coal seams is often very challenging. The existing empirical prediction methods are inflexible for varying geological and mining conditions. An improved influence function method has been developed to take the advantage of its fundamentally sound nature and flexibility. In developing this method, the original Knothe function has been transformed to produce a continuous and asymmetrical subsidence influence function. The empirical equations for final subsidence parameters derived from col- lected longwall subsidence data have been incorporated into the mathematical models to improve the prediction accuracy. A number of demonstration cases for longwall mining operations in coal seams with varying inclination angles, depths and panel widths have been used to verify the applicability of the new subsidence prediction model. 展开更多
关键词 Subsidence prediction Influence function method Inclined coal seam Longwall mining
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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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Feasibility analysis of gob-side entry retaining on a working face in a steep coal seam 被引量:10
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作者 Deng Yuehua Wang Shouquan 《International Journal of Mining Science and Technology》 SCIE EI 2014年第4期499-503,共5页
Based on the decline in exploitation of coal resources, steep coal seam mining and mining face tensions continue to explore the feasibility analysis of steeply inclined faces in the gob. One of the key factors in util... Based on the decline in exploitation of coal resources, steep coal seam mining and mining face tensions continue to explore the feasibility analysis of steeply inclined faces in the gob. One of the key factors in utilizing the technology of gob-side entry retaining in steep coal seams is to safely and effectively prevent caving rock blocks from rushing into the gob-side entry by sliding downwards along levels. Using theoretical analysis and field methods, we numerically simulated the mining process on a fully-mechanized face in a steep coal seam. The stress and deformation process of roof strata has been analyzed, and the difficulty of utilizing the technology is considered and combined with practice in a steep working face in Lvshuidong mine. The feasibility of utilizing the technology of gob-side entry retaining in a steep coal seam has been recognised. We propose that roadways along the left lane offshoot body use a speciallymade reinforced steel dense net to build a dense rock face at the lower head. The results show that the lane offshoot branch creates effective roof control, safe conditions for roadway construction workers, and practical application of steeply inclined gob. 展开更多
关键词 Gob-side entry retaining Steep coal seam Fully-mechanized mining Feasibility analysis Numerical simulation
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Analysis of stability of support and surrounding rock in mining top coa of inclined coal seam 被引量:8
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作者 Xin Yajun Gou Panfeng Ge Fudong 《International Journal of Mining Science and Technology》 SCIE EI 2014年第1期63-68,共6页
The study analyzes the characteristics of roof movement in mining top coal of inclined coal seam,and establishes the mechanical model of support and surrounding-rock stability in inclined coal seam.Besides,this study ... The study analyzes the characteristics of roof movement in mining top coal of inclined coal seam,and establishes the mechanical model of support and surrounding-rock stability in inclined coal seam.Besides,this study carries out the numerical calculation and field observation of roof movement and support stability,and provides the critical control measures.The results show that the fracture firstly appears in middle-upper roof and extends upwards in top coal caving in inclined coal seam;regular and irregular caving zones appear in middle-upper stress concentration region,and the asymmetric caving arch is finally formed.Support load of middle-upper working face is larger than that of the middle-lower face;dynamic load coefficient of upper support is large,and the load on the front of support is larger than that on the rear of it,which leads to poor support stability.Stability of support and surrounding-rock system depends mainly on upper-support stability. 展开更多
关键词 Inclined coal seamRoof movement Mechanical modelStability
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Top coal flows in an excavation disturbed zone of high section top coal caving of an extremely steep and thick seam 被引量:8
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作者 Miao Shengjun Lai Xingping Cui Feng 《Mining Science and Technology》 EI CAS 2011年第1期99-105,共7页
Compared with gentle dip long-wall caving,the length of a working face in fully-mechanized top-coal caving for extremely steep and thick seams is short,while its horizontal section is high with increasing production.B... Compared with gentle dip long-wall caving,the length of a working face in fully-mechanized top-coal caving for extremely steep and thick seams is short,while its horizontal section is high with increasing production.But the caving ratio is low,which might result in some disasters,such as roof falls,induced by local and large area collapse of the top coal in a working face and dangers induced by gas accumulation. After the development of cracks and weakening of the coal body,the tall,broken section of the top coal(a granular medium)of an extremely steep seam(over 60°)shows clear characteristics of nonlinear movement.We have thoroughly analyzed the geological environment and mining conditions of an excavation disturbed zone.Based on the results from a physical experiment of large-scale 3D modeling and coupling simulation of top coal-water-gas,we conclude that the weakened top coal can be regarded as a non-continuous medium.We used a particle flow code program to compare and analyze migration processes and the movements of a 30 m high section top coal over time before and after weakening of an extremely steep seam in the Weihuliang coal mine.The results of our simulation, experiment and monitoring show that pre-injection of water and pre-splitting blasting improve caving ability and symmetrical caving,relieve space for large area dynamic collapse of top coal,prolong migration time of noxious gases and release them from the mined out area and so achieve safety in mining. 展开更多
关键词 Top coal flowsExtremely steep and thick coal seamHigh section top coal caving (HSTCC)Particle flow
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Study on first caving fracture mechanism of overlying roof rock in steep thick coal seam 被引量:3
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作者 Zhang Bei Cao Shenggen 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2015年第1期133-138,共6页
Based on the elastic plate theory, a mechanical model of thin plate for the first caving of overlying roof rock in steep mining face was established. The analytical solution of the deflection and stress distribution o... Based on the elastic plate theory, a mechanical model of thin plate for the first caving of overlying roof rock in steep mining face was established. The analytical solution of the deflection and stress distribution of roof rocks was obtained. According to the specific geological conditions of the 5-103 panel in Shanxi,the failure of roof rocks and the influence of seam dip on it during the exploitation were theoretically investigated. Meanwhile, the first caving characteristics of the overlying rock in the steep coal seam were investigated based on its stress contour. The results show that the dip angle has a distinct influence on the caving interval and the first caving interval for the 5-103 panel is 37 m in theory. Finally, a systematic monitoring on the behavior of rock pressures was conducted. The measured results agree well with the theoretical prediction, which provides a good reference for practical steep coal seam mining. 展开更多
关键词 SteepMining fieldInitial fracture intervalThin plate theoryCoal pressure monitoring
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