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Hydraulic support crushed mechanism for the shallow seam mining face under the roadway pillars of room mining goaf 被引量:9
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作者 Wang Fangtian Duan Chaohua +2 位作者 Tu Shihao Liang Ningning bai qingsheng 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2017年第5期853-860,共8页
While the fully-mechanized longwall mining technology was employed in a shallow seam under a room mining goaf and overlained by thin bedrock and thick loose sands, the roadway pillars in the abandoned room mining goaf... While the fully-mechanized longwall mining technology was employed in a shallow seam under a room mining goaf and overlained by thin bedrock and thick loose sands, the roadway pillars in the abandoned room mining goaf were in a stress-concentrated state, which may cause abnormal roof weighting, violent ground pressure behaviours, even roof fall and hydraulic support crushed(HSC) accidents. In this case,longwall mining safety and efficiency were seriously challenged. Based on the HSC accidents occurred during the longwall mining of 3-1-2 seam, which locates under the intersection zone of roadway pillars in the room mining goaf of 3-1-1 seam, this paper employed ground rock mechanics to analyse the overlying strata structure movement rules and presented the main influence factors and determination methods for the hydraulic support working resistance. The FLAC3 D software was used to simulate the overlying strata stress and plastic zone distribution characteristics. Field observation was implemented to contrastively analyse the hydraulic support working resistance distribution rules under the roadway pillars in strike direction, normal room mining goaf, roadway pillars in dip direction and intersection zone of roadway pillars. The results indicate that the key strata break along with rotations and reactions of the coal pillars deliver a larger concentrated load to the hydraulic support under intersection zone of roadway pillars than other conditions. The ‘‘overburden strata-key strata-roadway pillars-immediate roof" integrated load has exceeded the yield load that leads to HSC accidents. Findings in HSC mechanism provide a reasonable basis for shallow seam mining, and have important significance for the implementation of safe and efficient mining. 展开更多
关键词 Shallow seam ROOM MINING GOAF LONGWALL MINING Hydraulic support CRUSHED MECHANISM Safe and efficient MINING
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Overburden fracture evolution laws and water-controlling technologies in mining very thick coal seam under water-rich roof 被引量:8
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作者 Zhang Youxi Tu Shihao +1 位作者 bai qingsheng Li Jianjun 《International Journal of Mining Science and Technology》 SCIE EI 2013年第5期693-700,共8页
Considering the danger of water inrush in mining very thick coal seam under water-rich roof in Majialiang Coal Mine,the universal discrete element(UDEC)software was used to simulate the overburden fracture evolution l... Considering the danger of water inrush in mining very thick coal seam under water-rich roof in Majialiang Coal Mine,the universal discrete element(UDEC)software was used to simulate the overburden fracture evolution laws when mining 4#coal seam.Besides,this study researched on the influence of face advancing length,speed and mining height on the height of the water flowing fractured zones(HWFFZ),and analyzed the correlation of face advancing length and change rules of aquifer water levels and goaf water inflow.Based on those mentioned above,this research proposed the following water-controlling technologies:draining the roof water before mining,draining goaf water,reasonable advancing speed and mining thickness.These water-controlling technologies were successfully used in the feld,thus ensured safely mining the very thick coal seam under water-rich roof. 展开更多
关键词 Water-rich roof Very thick coal seam Mining induced fracture Evolution law Water-controlling technology
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Theoretical analysis on the deformation characteristics of coal wall in a longwall top coal caving face 被引量:5
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作者 bai qingsheng Tu Shihao +1 位作者 Li Zhaoxin Tu Hongsheng 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2015年第2期199-204,共6页
Against the background of analyzing coal wall stability in 14101 fully mechanized longwall top coal caving face in Majialiang coal mine,based on the torque equilibrium of the coal wall,shield support and the roof stra... Against the background of analyzing coal wall stability in 14101 fully mechanized longwall top coal caving face in Majialiang coal mine,based on the torque equilibrium of the coal wall,shield support and the roof strata,an elastic mechanics model was established to calculate the stress applied on the coal wall.The displacement method was used to obtain the stress and deformation distributions of the coal wall.This study also researched the influence of support resistance,protective pressure to the coal wall,fracture position of the main roof and mining height on the coal wall deformation.The following conclusions are drawn:(1) The shorter the distance from the longwall face,the greater the vertical compressive stress and horizontal tensile stress borne by the coal wall.The coal wall is prone to failure in the form of compressive-shear and tension;(2) With increasing support resistance,the revolution angle of the main roof decreases linearly.As the support resistance and protective force supplied by the face guard increases,the maximum deformation of the coal wall decreases linearly;(3) As the face approaches the fracture position of the main roof,coal wall horizontal deformation increases significantly,and the coal wall is prone to instability;and(4) The best mining height of 14101 longwall face is 3.0 m. 展开更多
关键词 综采放顶煤 变形特性 煤壁 采面 弹性力学模型 综采工作面 应力和 顶板岩层
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Suitable retention and recovery technology of floor coal at ends of fully mechanized face with great mining heights 被引量:3
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作者 Zhang Nenghu Wu Qi +1 位作者 YuanYong bai qingsheng 《Mining Science and Technology》 EI CAS 2011年第2期281-285,共5页
在大采矿高度的脸的网关主要沿着煤缝接的房顶被驾驶。为网关高度限制, 13 m 地板煤被保留,离开在脸结束的三角形的地板煤,引起煤的损失。为了改进煤恢复率并且在煤采矿保证设备的效率,面对,我们在脸结束调查了合适的保留方法和地... 在大采矿高度的脸的网关主要沿着煤缝接的房顶被驾驶。为网关高度限制, 13 m 地板煤被保留,离开在脸结束的三角形的地板煤,引起煤的损失。为了改进煤恢复率并且在煤采矿保证设备的效率,面对,我们在脸结束调查了合适的保留方法和地板煤的恢复技术。上面的地板煤能被 shearer 直接与地板 dinting 恢复。在推进了地板 dinting 以后,更低的地板煤被 shearer 与地板 dinting 恢复并且为在一道拖拽网关保护煤方面保留步。地实践证明这个方法能改进恢复与大采矿高度在充分使机械化的工作的脸评估的煤。 展开更多
关键词 开采高度 恢复技术 综采工作面 地板 煤层 煤炭回采率 顶部驱动 保存方法
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深部高瓦斯矿井保护层少矸化“采选充+抽”开采技术 被引量:7
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作者 郝定溢 白庆升 +1 位作者 李文龙 杨振乾 《采矿与安全工程学报》 EI CSCD 北大核心 2020年第1期93-100,共8页
针对深部"采选充+抽"一体化矿井中以岩层为保护层和矸石不出井的技术难题,分析提出了此类矿井保护层少矸化时空协调开采技术。以平煤十二矿为例,首先根据提出的保护层少矸化时空协调开采技术确定了保护层的层位;利用考虑含瓦... 针对深部"采选充+抽"一体化矿井中以岩层为保护层和矸石不出井的技术难题,分析提出了此类矿井保护层少矸化时空协调开采技术。以平煤十二矿为例,首先根据提出的保护层少矸化时空协调开采技术确定了保护层的层位;利用考虑含瓦斯煤岩体的骨架可变形性和气体可压缩性的固气耦合模型,数值模拟研究了保护层少矸化开采厚度对被保护层工作面膨胀变形率、应力和瓦斯压力变化特征等的影响,优化了保护层采厚;最后依据卸压保护角和保护层采厚等参数确定了保护层工作面长度,并分析井下煤矸物流系统和就地分选及充填系统。针对得出的保护层少矸化开采参数,从卸压增透的时效性和少矸化两个方面分析了保护层少矸化时空协调开采效果。 展开更多
关键词 “采选充+抽” 保护层开采 少矸化 时空协调
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