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公路顺层岩质边坡开挖稳定性分析及锚固设计 被引量:3
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作者 李昌龙 《路基工程》 2018年第A01期25-28,43,共5页
运用FLAC3D数值软件建立了某公路等倾顺层岩质边坡的"层-面-层"分析模型,并通过监测桩提取代表点的水平应力和位移,进而模拟边坡的稳定性,获得相应滑面。在推测滑面基础上,反算出滑面的参数,进而评价潜在滑体的稳定性。根据... 运用FLAC3D数值软件建立了某公路等倾顺层岩质边坡的"层-面-层"分析模型,并通过监测桩提取代表点的水平应力和位移,进而模拟边坡的稳定性,获得相应滑面。在推测滑面基础上,反算出滑面的参数,进而评价潜在滑体的稳定性。根据潜在滑体的稳定性及预算推力,对坡体作了锚固设计,并通过理正岩土软件验证了设计的可靠性。案例边坡开挖后,后缘张拉裂缝的位置与推测滑面的后缘位置一致,锚固方案实施后坡体稳定。 展开更多
关键词 岩质边坡 层-面-层 稳定性 锚固设计 可靠性
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公路岩质边坡工程的开挖稳定性分析
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作者 常向荣 《佳木斯大学学报(自然科学版)》 CAS 2024年第5期113-117,共5页
针对闽清县X127线省璜镇省璜至谷洋段公路改建工程某处边坡,对其进行开挖的稳定性分析。通过FLAC3D软件,进行“层-面-层”模型的构建并对其进行分析,同时设定3个监测桩对特征点的位移以及水平应力进行分析,以得到滑面,进行开挖稳定性的... 针对闽清县X127线省璜镇省璜至谷洋段公路改建工程某处边坡,对其进行开挖的稳定性分析。通过FLAC3D软件,进行“层-面-层”模型的构建并对其进行分析,同时设定3个监测桩对特征点的位移以及水平应力进行分析,以得到滑面,进行开挖稳定性的模拟。依据推力以及稳定参数,进行相应的锚固设计,同时经过验证,方案实际可行,能够保证开挖边坡坡体稳定。 展开更多
关键词 开挖稳定性 锚固设计 监测桩 层-面-层
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Fracture evolution and pressure relief gas drainage from distant protected coal seams under an extremely thick key stratum 被引量:53
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作者 WANG Liang CHENG Yuan-ping +2 位作者 LI Feng-rong WANG Hai-feng LIU Hai-bo 《Journal of China University of Mining and Technology》 EI 2008年第2期182-186,共5页
When an extremely thick rock bed exists above a protected coal seam in the bending zone given the condition of a mining protective seam, this extremely thick rock bed controls the movement of the entire overlying stra... When an extremely thick rock bed exists above a protected coal seam in the bending zone given the condition of a mining protective seam, this extremely thick rock bed controls the movement of the entire overlying stratum. This extremely thick rock bed, called a "main key stratum", will not subside nor break for a long time, causing lower fractures and bed separations not to close and gas can migrate to the bed separation areas along the fractures. These bed separations become gas enrichment areas. By analyzing the rule of fracture evolution and gas migration under the main key stratum after the deep protective coal seam has been mined, we propose a new gas drainage method which uses bore holes, drilled through rock and coal seams at great depths for draining pressure relief gas. In this method, the bores are located at a high level suction roadway (we can also drill them in the drilling field located high in an air gateway). Given the practice in the Haizi mine, the gas drainage rate can reach 73% in the middie coal group, with a gas drainage radius over 100 m. 展开更多
关键词 extremely thick key stratum protective seam exploitation fracture evolution gas drainage distant borehole drilling
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Rock mechanical investigation of strata loading characteristics to assess caving and requirement of support resistance in a mechanized powered support longwall face 被引量:6
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作者 Aveek Mangal P.S.Paul 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2016年第6期1081-1087,共7页
Longwall mining is one of the most acclaimed and widely used in underground method for coal extraction. The interaction of powered supports with the roof is the key issue in strata mechanics of longwall mining. Contro... Longwall mining is one of the most acclaimed and widely used in underground method for coal extraction. The interaction of powered supports with the roof is the key issue in strata mechanics of longwall mining. Controlled caving of rock mass is a prerequisite pro thriving exploitation of coal deposits by longwall retreat with caving technique and support resistance has evolved as the most promising and effective scientific tool to predict various aspects related to strata mechanics of such workings. Load density,height of caving block, distance of fractured zone ahead of the face, overhang of goaf and mechanical strength of the debris above and below the support base have been found to influence the magnitude of load on supports. Designing powered support has been attempted at the different countries in different methods. This paper reviews the mechanism of roof caving and the conventional approaches of caving behaviour and support resistance requirement in the context of major strata control experiences gained worldwide. The theoretical explanation of the mechanism of roof caving is still continuing with consistently improved understanding through growing field experiences in the larger domain of geo-mining conditions and state-of-art strata mechanics analysis and monitoring techniques. 展开更多
关键词 Longwall mining Geo-mechanics Caving behaviour Support resistance
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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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