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Domino instability effect of surrounding rock-coal pillars in a room-and-pillar gob 被引量:7
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作者 Li Chong Xu Jinhai +1 位作者 Wang Zhongliang Qin Shuai 《International Journal of Mining Science and Technology》 SCIE EI 2013年第6期913-918,共6页
To discuss the domino instability effect and large area roof falling and roof accidents of surrounding rockcoal pillars in a room-and-pillar gob,the equilibrium equation for a roof-coal pillar-floor system with the in... To discuss the domino instability effect and large area roof falling and roof accidents of surrounding rockcoal pillars in a room-and-pillar gob,the equilibrium equation for a roof-coal pillar-floor system with the influence of mining floor was developed based on the engineering conditions of the surrounding rock in a room-and-pillar gob in the 3^(-2)coal seam of Tanggonggou mine.The conditions of system instability and the relationship between system stability and system stiffness were analyzed from an energetic point of view.Numerical simulation using the discrete element software UDEC was also carried out to simulate conditions causing the domino effect on surrounding rock-coal pillars in a 3^(-2)room-and-pillar gob.The results show that:if we want the system to destabilize,the collective energy in roof-and-floor must be larger than that in the coal pillar.When the stiffness of the coal pillars and the roof-and-floor are both greater than zero,the system is stable.When the stiffness of the coal pillars is negative but the summed stiffness of the coal pillars and roof-and-floor is larger than or equal to zero,the system is statically destroyed.When the sum of the coal pillars and the roof-floor stiffness is negative,the system suffers from severe damages.For equal advance distances of the coal mining face,the wider coal pillars can reduce the probability of domino type instability.Conversely,the smaller width pillars can increase the instability probability.Domino type instability of surrounding rock-coal pillars is predicted to be unlikely when the width of coal pillars is not less than 8 m. 展开更多
关键词 Domino effect Surrounding rock room-and-pillar Gob
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房柱式采空区上部煤层上行开采可行性分析 被引量:7
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作者 刘增平 《煤矿开采》 北大核心 2012年第2期38-40,共3页
韩桥湾煤矿二盘区下部2-2煤层厚度大,开采条件优越,先行采用房柱式开采完毕,使其上部1-2煤层不能按正常顺序开采。根据两煤层赋存条件(煤层厚度、层间距、层间岩性等),采用垮落开采的比值法、"三带"判别法、围岩平衡法以及上... 韩桥湾煤矿二盘区下部2-2煤层厚度大,开采条件优越,先行采用房柱式开采完毕,使其上部1-2煤层不能按正常顺序开采。根据两煤层赋存条件(煤层厚度、层间距、层间岩性等),采用垮落开采的比值法、"三带"判别法、围岩平衡法以及上、下煤层开采的时间间隔,分析论证了1-2煤层上行开采的可行性,确认二盘区上行开采1-2煤层技术上是可行的,由此可解放上方呆滞煤量,延长矿井寿命,提高经济效益,具有重要现实意义。 展开更多
关键词 房柱式 采空区 上行开采 比值判别法 “三带”判别法 围岩平衡判别法
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近距离煤层上行开采可行性研究 被引量:7
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作者 孙泽东 郝兵元 黄辉 《煤炭技术》 CAS 北大核心 2014年第10期147-150,共4页
根据小回沟煤矿8#和9#煤层特殊地质情况,对其上行开采可行性进行研究。通过采动影响系数法、三带判断法、围岩平衡法论证得出9#煤层采用房柱式开采后可以实现8#煤层蹬空开采。结合房柱式开采工艺理论要求及8#煤层长壁工作面向底板传递... 根据小回沟煤矿8#和9#煤层特殊地质情况,对其上行开采可行性进行研究。通过采动影响系数法、三带判断法、围岩平衡法论证得出9#煤层采用房柱式开采后可以实现8#煤层蹬空开采。结合房柱式开采工艺理论要求及8#煤层长壁工作面向底板传递载荷计算分析合理设计9#煤层采留比,并运用FLAC3D数值模拟验证了理论分析的正确性。 展开更多
关键词 上行开采 蹬空开采 房柱式 传递载荷
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煤柱失稳条件下浅埋房柱式采空区上覆地层变形特征
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作者 刘亚明 谷天峰 +1 位作者 杨烜宇 王闫超 《兰州大学学报(自然科学版)》 CAS CSCD 北大核心 2024年第4期494-500,508,共8页
在煤柱失稳引起房柱式采空区顶板变形但未塌落的情况下,地表产生较大变形,威胁地面建筑物的安全.采用物理模拟和理论分析研究该条件下房柱式采空区上覆地层变形的发育机制,结果表明,房柱式采空区煤柱失稳后地表最大变形点与初期失稳煤... 在煤柱失稳引起房柱式采空区顶板变形但未塌落的情况下,地表产生较大变形,威胁地面建筑物的安全.采用物理模拟和理论分析研究该条件下房柱式采空区上覆地层变形的发育机制,结果表明,房柱式采空区煤柱失稳后地表最大变形点与初期失稳煤柱位置、采空区顶板裂缝处三者在竖直方向上相对应;在采空区顶板变形但未塌落的情况下覆岩变形可划分为“条带状”、“梯形状”和“漏斗型”变形区域.松散层变形为“漏斗型”发育;采空区顶板发生断裂前可视为均布荷载作用下的固支梁模型.在煤柱失稳条件下,岩梁跨中下表面拉应力区产生竖向裂缝,并垂直向上扩展,煤柱的持续失稳会导致岩梁沿原裂缝薄弱面发生破坏,最终导致岩梁发生拉破断.基岩变形发展至交界面时,松散层逐渐发生滑移-拉裂-剪切破坏,最终形成“漏斗型”破坏形态. 展开更多
关键词 房柱式 采空区 煤柱失稳 物理模型
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基于物理模拟试验的房柱式采空区变形特征研究
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作者 刘亚明 谷天峰 +1 位作者 王闫超 杨烜宇 《煤炭科学技术》 EI CAS CSCD 北大核心 2024年第S01期30-36,共7页
房柱式采空区具有采出率较小、留设煤柱较大的特点,其覆岩移动规律及地表变形规律与长壁式采空区差别较大,在煤柱失效情况下,地表会产生较大变形,威胁地面建构筑物的安全。为研究浅埋缓倾房柱式采空区覆岩和松散层的变形发育机制,基于PI... 房柱式采空区具有采出率较小、留设煤柱较大的特点,其覆岩移动规律及地表变形规律与长壁式采空区差别较大,在煤柱失效情况下,地表会产生较大变形,威胁地面建构筑物的安全。为研究浅埋缓倾房柱式采空区覆岩和松散层的变形发育机制,基于PIV图像处理技术和模块化组装思路,在室内建立物理模型开展物理模拟试验,反演了房柱式采空区覆岩和松散层的变形发育过程,分析了房柱式开采和煤柱失稳条件下覆岩和松散层的变形机制。研究结果表明:①房柱式开采条件下,浅埋缓倾采空区覆岩变形可划分为3个区域:“条带状”变形区域、“梯形状”变形区域和“倒漏斗型”变形区域。松散层中的变形呈“梯形状”发育。②煤柱失稳条件下,覆岩变形规律保持不变,松散层变形特征由“梯形状”发育为“漏斗型”,且随着失稳煤柱的增加,松散层变形增大,“漏斗型”变形区域由中心向两端逐渐扩展。③房柱式开采结束后,采空区顶板受力可简化为承受均布荷载的简支梁,在煤柱持续失稳的情况下,覆岩和松散层的静载将导致采空区顶板达到极限平衡状态,顶板破坏模式为拉破断,在拉应力作用下产生裂缝,但顶板并未完全断裂,采空区顶板形成一种带裂缝的悬臂梁结构。浅埋缓倾房柱式采空区煤柱失稳对地表变形影响剧烈,松散层变形与覆岩变形基本处于同一量级。 展开更多
关键词 房柱式 采空区 覆岩移动 松散层 地表变形
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Subsidence over room and pillar retreat mining in a low coal seam 被引量:4
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作者 Andre Zingano Anderson Weiss 《International Journal of Mining Science and Technology》 EI CSCD 2019年第1期51-57,共7页
The objective of this paper is to study the behavior of a low thick and low depth coal seam and the overburden rock mass. The mining method is room and pillar in retreat and partial pillar recovery. The excavation met... The objective of this paper is to study the behavior of a low thick and low depth coal seam and the overburden rock mass. The mining method is room and pillar in retreat and partial pillar recovery. The excavation method is conventional drill and blast because of the small production. The partial pillar recovery is about 30% of the previous pillar size, 7 m × 7 m. The roof displacement was monitored during retreat operation; the surface movement was also monitored. The effect of the blasting vibration on the final pillar strength had been considered. Due to blasting, the pillar reduced about 20%. The consequence is more pillar deformation and roof vertical displacement. The pillar retreat and ground movement were simulated in a three-dimensional numerical model. This model was created to predict the surface subsidence and compare to the subsidence measured. This study showed that the remaining pillar and low seam reduce the subsidence that was predicted with conventional methods. 展开更多
关键词 SUBSIDENCE room-and-pillar MINING RETREAT MINING Coal
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Preventing roof fall fatalities during pillar recovery:A ground control success story 被引量:4
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作者 Mark Christopher Gauna Michael 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2017年第1期107-113,共7页
For decades, pillar recovery accounted for a quarter of all roof fall fatalities in underground coal mines.Studies showed that a miner on a pillar recovery section was at least three times more likely to be killed by ... For decades, pillar recovery accounted for a quarter of all roof fall fatalities in underground coal mines.Studies showed that a miner on a pillar recovery section was at least three times more likely to be killed by a roof fall than other coal miners. Since 2007, however, there has been just one fatal roof fall on a pillar line. This paper describes the process that resulted in this historic achievement. It covers both the key research findings and the ways in which those insights, beginning in the early 2000 s, were implemented in mining practice. One key finding was that safe pillar recovery requires both global and local stability.Global stability is addressed primarily through proper pillar design, and became a major focus after the2007 Crandall Canyon mine disaster. But the most significant improvements resulted from detailed studies that showed that local stability, defined as roof control in the immediate work area, could be achieved with three interventions:(1) leaving an engineered final stump, rather than extracting the entire pillar,(2) enhancing roof bolt support, particularly in intersections, and(3) increasing the use of mobile roof supports(MRS). A final component was an emphasis on better management of pillar recovery operations.This included a focus on worker positioning, as well as on the pillar and lift sequences, MRS operations,and hazard identification. As retreat mines have incorporated these elements into their roof control plans,it has become clear that pillar recovery is not ‘‘inherently unsafe." The paper concludes with a discussion of the challenges that remain, including the problems of rib falls and coal bursts. 展开更多
关键词 Retreat mining Roof support room-and-pillar Ground control
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Geotechnical considerations for concurrent pillar recovery in close-distance multiple seams 被引量:1
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作者 Peter Zhang Berk Tulu +1 位作者 Morgan Sears Jack Trackemas 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2018年第1期21-27,共7页
Room-and-pillar mining with pillar recovery has historically been associated with more than 25% of all ground fall fatalities in underground coal mines in the United States.The risk of ground falls during pillar recov... Room-and-pillar mining with pillar recovery has historically been associated with more than 25% of all ground fall fatalities in underground coal mines in the United States.The risk of ground falls during pillar recovery increases in multiple-seam mining conditions.The hazards associated with pillar recovery in multiple-seam mining include roof cutters, roof falls, rib rolls, coal outbursts, and floor heave.When pillar recovery is planned in multiple seams, it is critical to properly design the mining sequence and panel layout to minimize potential seam interaction.This paper addresses geotechnical considerations for concurrent pillar recovery in two coal seams with 21 m of interburden under about 305 m of depth of cover.The study finds that, for interburden thickness of 21 m, the multiple-seam mining influence zone in the lower seam is directly under the barrier pillar within about 30 m from the gob edge of the upper seam.The peak stress in the interburden transfers down at an angle of approximately 20°away from the gob, and the entries and crosscuts in the influence zone are subjected to elevated stress during development and retreat.The study also suggests that, for full pillar recovery in close-distance multiple-seam scenarios,it is optimal to superimpose the gobs in both seams, but it is not necessary to superimpose the pillars.If the entries and/or crosscuts in the lower seam are developed outside the gob line of the upper seam,additional roof and rib support needs to be considered to account for the elevated stress in the multiple-seam influence zone. 展开更多
关键词 pillar recovery room-and-pillar RETREAT MINING MULTIPLE SEAM MINING sequence pillar design
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Integrating the effect of abutments in estimating the average vertical stress of elastic hard rock pillars by combining numerical modelling and artificial neural networks
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作者 Nevaid Dzimunya Yoshiaki Fujii Youhei Kawamura 《Underground Space》 SCIE EI CSCD 2023年第6期121-135,共15页
Estimating average vertical pillar stresses is a critical step in designing room-and-pillar mines.Several analytical methods can be used to estimate the vertical stresses acting on the pillars.However,the present anal... Estimating average vertical pillar stresses is a critical step in designing room-and-pillar mines.Several analytical methods can be used to estimate the vertical stresses acting on the pillars.However,the present analytical methods fail to adequately account for the influence of abutments on the distribution of vertical stresses,especially when applied to narrow panel widths and pillar layouts comprising evenly spaced barriers.In this study,a multi-layer perceptron neural network(MLPNN)was applied to predict the vertical loads of regular pillars more accurately.Hundreds of room-and-pillar mine layouts were modeled using a displacement discontinuity method(DDM),and a database of 2355 sampled pillar cases was compiled.The MLPNN was trained based on this database,and its prediction capabilities were further validated using simulations by a finite difference code(i.e.,FLAC3D).The model predictions and the FLAC3D simulations reasonably agreed with a regression coefficient of 0.99.The model was also adapted for mine cases with evenly spaced barrier pillars,and its application to a real case study mine has shown to provide accurate pillar stress estimations;hence,this model is suitable for practical use at mines.Even though the MLPNN model cannot be applied universally to all mine situations,it seems as a significant improvement over existing analytical techniques in terms of accounting for the influence of abutments on pillar stresses. 展开更多
关键词 pillar stress ABUTMENTS Multi-layer perceptron neural network Numerical simulation room-and-pillar mine
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Roadway layout for recycling residual coal pillar in room-and-pillar mining of thick coal seam 被引量:2
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作者 Jin Gan Wang Lianguo +2 位作者 Zhang Jihua Hu Minjun Duan Ning 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2015年第5期729-734,共6页
In the context of a room-and-pillar mining gob in Shanxi province in China,this paper numerically investigates the stress distribution and deformation rules of roadway surrounding rocks at various locations of residua... In the context of a room-and-pillar mining gob in Shanxi province in China,this paper numerically investigates the stress distribution and deformation rules of roadway surrounding rocks at various locations of residual coal pillars in room-and-pillar mining gobs using software FLAC3 D.It is found that the concentrated stress beneath coal pillars distributes in a shape of ellipse.A reasonable roadway layout is then proposed.In this design,it is indicated that roadways should be designed to avoid the supporting zones of pillars with increasing compression and take into account the roof falling and crushing in the upper gob.According to the surrounding rock deformation characteristics and mining roadway locations as well as the supporting principles of timely support,rock reinforcing,piecewise management and suiting local conditions,a new asymmetric shield supporting plan is proposed.The field surveying results show that this supporting plan can effectively control the roadway rock deformation,thus guarantee the safe and smooth construction of roadways. 展开更多
关键词 room-and-pillar mine Residual coal pillar Repeated mining Roadway layout Asymmetric support
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Elimination of boundary effect for laminated overburden model in pillar stability analysis 被引量:2
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作者 张鹏 K. A. Heasley 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第6期1468-1473,共6页
The laminated overburden model(La Model)has been widely used for pillar design and stability analysis.As a boundary element program,the La Model program is sensitive to the boundary condition,which should be considere... The laminated overburden model(La Model)has been widely used for pillar design and stability analysis.As a boundary element program,the La Model program is sensitive to the boundary condition,which should be considered before creating the model.To eliminate the boundary effect in a La Model pillar stability analysis,a suitable boundary buffer zone is needed around the model edge.The radius of influence(R)and the abutment load extent(D)are two major factors that affect the stresses and displacements calculated in LaM odel.To determine the optimum buffer zone extent,a database of case histories was analyzed using the La Model program.Values for R and D were varied until a buffer zone having negligible influence on the pillar stability factor(SF)of the active mining zone(AMZ)was determined. 展开更多
关键词 pillar stability boundary effect LaModel numerical simulation room-and-pillar
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Protecting miners from coal bursts during development above historic mine workings in Harlan County,KY 被引量:2
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作者 Christopher Mark 《International Journal of Mining Science and Technology》 SCIE EI CAS CSCD 2021年第1期111-116,共6页
In order to reach a large,untapped reserve of high-quality coal,D8 Cloverlick Mine proposed to mine a corridor nearly 600 m deep beneath the Benham Spur of Black Mountain,Kentucky’s highest peak.D8 Cloverlick Mine wa... In order to reach a large,untapped reserve of high-quality coal,D8 Cloverlick Mine proposed to mine a corridor nearly 600 m deep beneath the Benham Spur of Black Mountain,Kentucky’s highest peak.D8 Cloverlick Mine was extracting the Owl seam,but the corridor’s route lay approximately 20 m above century-old mine workings in the C–(Darby)seam.Adding to the concern,three serious coal bursts had recently occurred in nearby Owl seam workings.Maps of the old workings seemed to indicate that the underlying C–seam had been fully extracted.However,two of the coal bursts had occurred above areas where the C–Seam was also shown as mined out.Mine Safety and Health Administration(MSHA)Technical Support therefore investigated the records of past mining to better understand the old mine maps.Underground conditions observed in current Owl seam workings were also compared with the maps of the old C–seam workings.The study concluded that the presence of hazardous underlying remnants could not be ruled out.To mitigate the burst risk,D8 Cloverlick Mine adopted a strategy of stress probe drilling.A self-propelled coal drill was used to auger 11.5-m-long,small diameter holes in advance of mining.As each hole was drilled,the cuttings were measured to detect the presence of highly stressed coal.Ultimately the crossing was successfully completed without incident. 展开更多
关键词 Coal bursts Underground mining room-and-pillar DESTRESSING
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The current perspective of the PA 1957 gas well pillar study and its implications for longwall gas well pillars
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作者 Peter Zhang Daniel Su Chris Mark 《International Journal of Mining Science and Technology》 SCIE EI CAS CSCD 2021年第1期117-126,共10页
Many states rely upon the Pennsylvania 1957 Gas Well Pillar Study to evaluate the coal barrier surrounding gas wells.The study included 77 gas well failure cases that occurred in the Pittsburgh and Freeport coal seams... Many states rely upon the Pennsylvania 1957 Gas Well Pillar Study to evaluate the coal barrier surrounding gas wells.The study included 77 gas well failure cases that occurred in the Pittsburgh and Freeport coal seams over a 25-year span.At the time,coal was mined using the room-and-pillar mining method with full or partial pillar recovery,and square or rectangle pillars surrounding the gas wells were left to protect the wells.The study provided guidelines for pillar sizes under different overburden depths up to 213 m(700 ft).The 1957 study has also been used to determine gas well pillar sizes in longwall mines since longwall mining began in the 1970 s.The original study was developed for room-and-pillar mining and could be applied to gas wells in longwall chain pillars under shallow cover.However,under deep cover,severe deformations in gas wells have occurred in longwall chain pillars.Presently,with a better understanding of coal pillar mechanics,new insight into subsidence movements induced by retreat mining,and advances in numerical modeling,it has become both critically important and feasible to evaluate the adequacy of the 1957 study for longwall gas well pillars.In this paper,the data from the 1957 study is analyzed from a new perspective by considering various factors,including overburden depth,failure location,failure time,pillar safety factor(SF),and floor pressure.The pillar SF and floor pressure are calculated by considering abutment pressure induced by full pillar recovery.A statistical analysis is performed to find correlations between various factors and helps identify the most significant factors for the stability of gas wells influenced by retreat mining.Through analyzing the data from the 1957 study,the guidelines for gas well pillars in the 1957 study are evaluated for their adequacy for roomand-pillar mining and their applicability to longwall mining.Numerical modeling is used to model the stability of gas wells by quantifying the mining-induced stresses in gas well casings.Results of this stud 展开更多
关键词 Gas well pillar Pennsylvania 1957 gas well pillar study room-and-pillar mining Longwall mining
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房柱式采空区上覆煤层长壁式开采可行性技术研究 被引量:1
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作者 邓天琳 《煤炭技术》 CAS 2019年第11期9-11,共3页
由于历史原因,精通兴旺煤业公司9#层8902工作面位于12#层房柱式采空区上方。结合同煤集团精通兴旺煤业公司9#层和12#层的采掘现状,预测12#层煤柱稳定性,用理论计算法估算12#层顶板最大冒落高度与裂隙带高度,为8902工作面长壁式蹬空开采... 由于历史原因,精通兴旺煤业公司9#层8902工作面位于12#层房柱式采空区上方。结合同煤集团精通兴旺煤业公司9#层和12#层的采掘现状,预测12#层煤柱稳定性,用理论计算法估算12#层顶板最大冒落高度与裂隙带高度,为8902工作面长壁式蹬空开采可行性提供技术支持。 展开更多
关键词 房柱式 采空区 上覆煤层 长壁式开采
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浅埋房柱式采空区下近距离煤层综采顶板控制技术 被引量:88
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作者 屠世浩 窦凤金 +2 位作者 万志军 王方田 袁永 《煤炭学报》 EI CAS CSCD 北大核心 2011年第3期366-370,共5页
针对浅埋房柱式采空区下近距离煤层综采工作面开采可能出现覆岩大面积冲击式来压等问题,结合鄂尔多斯乌兰集团石圪台煤矿3-1-2煤层综采工作面开采实际,采用理论分析、物理模拟、数值模拟及现场实测等研究方法,对该类煤层开采引起覆岩变... 针对浅埋房柱式采空区下近距离煤层综采工作面开采可能出现覆岩大面积冲击式来压等问题,结合鄂尔多斯乌兰集团石圪台煤矿3-1-2煤层综采工作面开采实际,采用理论分析、物理模拟、数值模拟及现场实测等研究方法,对该类煤层开采引起覆岩变形破坏、岩体弹性能聚集造成冲击式来压和压架机理、地表移动规律和井下矿压规律关系等进行了研究,针对性地采取了残留煤柱爆破放顶卸压、地面钻孔注砂充填煤房和合理控制采高等控制和预防措施,实现了工作面的安全高效生产。 展开更多
关键词 浅埋煤层 房柱式采空区 顶板控制 弹性聚能 压架事故
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浅埋煤层房柱式采空区下长壁开采矿压显现特征 被引量:62
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作者 解兴智 《煤炭学报》 EI CAS CSCD 北大核心 2012年第6期898-902,共5页
以鄂尔多斯地区浅埋煤层房柱式采空区下煤层长壁开采为主要研究对象,通过理论分析、现场矿压实测等方法,得出房柱式采空区上部覆岩在一定的采高范围内存在叠合梁结构,并且上位基本顶结构为固定梁,下位基本顶结构为悬臂梁,房柱式采空区... 以鄂尔多斯地区浅埋煤层房柱式采空区下煤层长壁开采为主要研究对象,通过理论分析、现场矿压实测等方法,得出房柱式采空区上部覆岩在一定的采高范围内存在叠合梁结构,并且上位基本顶结构为固定梁,下位基本顶结构为悬臂梁,房柱式采空区煤柱及以下顶板构成直接顶;在上位固定梁的回转力矩作用下,下位悬臂梁周期性折断,其动载荷通过房采区煤柱传递给采场支护结构。上位悬臂梁与下位悬臂梁失稳的不同周期性,会引起工作面周期来压的不等距和来压强度的不等强性,是长壁采场支架失稳的主要原因。 展开更多
关键词 浅埋煤层 房柱式采空区 长壁开采 顶板结构 周期来压
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硬石膏的流变特性及其长期强度的确定 被引量:40
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作者 刘沐宇 徐长佑 《中国矿业》 北大核心 2000年第2期53-55,共3页
本文以研究某石膏矿山地下采空区的长期稳定性为背景 ,以室内纯扭转流变实验为手段 ,研究了硬石膏的流变特性。通过对所获得的流变曲线的分析 ,建立了应力应变与时间之间的函数关系式 ,在此基础上获得了硬石膏的长期强度τ∞ =2 77MPa ... 本文以研究某石膏矿山地下采空区的长期稳定性为背景 ,以室内纯扭转流变实验为手段 ,研究了硬石膏的流变特性。通过对所获得的流变曲线的分析 ,建立了应力应变与时间之间的函数关系式 ,在此基础上获得了硬石膏的长期强度τ∞ =2 77MPa ,此值仅为硬石膏瞬时强度的 6 6 %。 展开更多
关键词 硬石膏 流变特性 长期强度 岩石 房柱采矿法
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基于FLAC^(3D)的采场结构参数优化 被引量:40
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作者 叶海旺 常剑 周磊 《金属矿山》 CAS 北大核心 2010年第12期6-8,26,共4页
房柱采矿法适合于开采水平或近似水平的矿体,在确保采场安全的前提下,获得较高的矿石回收率和降低矿石损失与贫化的重要途径是选取合理的采场结构参数。利用有限差分软件FLAC3D,建立了开采水平矿体时的采场结构力学模型并进行了数值模拟... 房柱采矿法适合于开采水平或近似水平的矿体,在确保采场安全的前提下,获得较高的矿石回收率和降低矿石损失与贫化的重要途径是选取合理的采场结构参数。利用有限差分软件FLAC3D,建立了开采水平矿体时的采场结构力学模型并进行了数值模拟,分析了采场结构参数对房柱法采场稳定性的影响。然后,针对鄂西缓薄高磷赤铁矿,通过数值模拟,得到了不同深度下的采场最优结构参数,并计算得到了矿石回收率,进而通过线性回归得到回收率随深度变化的函数关系。 展开更多
关键词 房柱采矿法 采场稳定性 数值模拟 参数优化
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房柱法开采矿山采空区失稳模式及机理 被引量:32
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作者 黄英华 徐必根 唐绍辉 《矿业研究与开发》 CAS 北大核心 2009年第4期24-26,共3页
房柱法开采矿山采空区稳定性状态是由矿柱和顶板两个基本要素共同决定的。介绍了矿柱和采空区顶板失稳的模式,根据矿山压力与岩层控制理论,分析了矿柱和采空区顶板破坏的力学机理,并对影响矿柱稳定性的因素进行了总结归纳。
关键词 房柱法 采空区 破坏模式 力学机理
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缓倾斜中厚矿体开采方法研究 被引量:28
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作者 修蕾 乔木 +1 位作者 李志军 刘新宇 《有色金属(矿山部分)》 2011年第2期8-10,63,共4页
缓倾斜中厚矿体的开采一直是国内外的采矿难题。在对国内外缓倾斜中厚矿体开采状况调查的基础上,分别就目前主要应用的采矿方法作了详细总结,并对各类采矿方法的发展趋势进行预测,以期对类似条件矿体的开采提供借鉴。
关键词 缓倾斜中厚矿体 房柱法 崩落法
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