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Definition, theory, methods, and applications of the safe and efficient simultaneous extraction of coal and gas 被引量:36
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作者 Yuanping Cheng Liang Wang +3 位作者 Hongyong Liu Shengli Kong Jintuo Zhu Qingyi Tu 《International Journal of Coal Science & Technology》 EI 2015年第1期52-65,共14页
Simultaneous extraction of the coal and gas is an effective method of eliminating coal mine gas disasters while safely exploiting the coal and achieving efficient gas drainage in China, which is widely accepted by the... Simultaneous extraction of the coal and gas is an effective method of eliminating coal mine gas disasters while safely exploiting the coal and achieving efficient gas drainage in China, which is widely accepted by the main coal-producing countries around the world. However, the concrete definition of simultaneous extraction is vague and there is little accurate theoretical support for the simultaneous extraction of coal and gas, which makes it difficult to determine an efficient gas drainage method appropriate to the features of coal seams. Based on theoretical analysis, laboratory tests and field observations, a specific definition of simultaneous extraction of coal and gas is proposed after analyzing the characteristics of coal seam occurrences in China, and we developed the mechanism of mining-enhanced permeability and established the corresponding theoretical model. This comprises a process of fracture network formation, in which the original fractures are opened and new fractures are produced by unloading damage. According to the theoretical model, the engineering approaches and their quantitative parameters of 'unloading by borehole drilling' for single coal seams and 'unloading by protective seam mining' for groups of coal seams are proposed, and the construction principles for coal exploitation and gas-drainage systems for different conditions are given. These methods were applied successfully in the Tunlan Coal Mine in Shanxi Province and the Panyi Coal Mine in Anhui Province and could assure safe and efficient simultaneous extraction of coal and gas in these outburst coal mines. 展开更多
关键词 coal seam gas Outburst coal seam Mining-enhanced permeability simultaneous extraction of coal and gas
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The control of coal mine gas and coordinated exploitation of coal bed methane in China 被引量:4
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作者 LIU Jian-zhong 《Journal of Coal Science & Engineering(China)》 2009年第3期267-272,共6页
Based on the characteristics of the coalfield geology and the distribution of coalbed methane (CBM) in China,the geological conditions for exploiting the CBM and drainingthe coal mine gas were analyzed,as well as the ... Based on the characteristics of the coalfield geology and the distribution of coalbed methane (CBM) in China,the geological conditions for exploiting the CBM and drainingthe coal mine gas were analyzed,as well as the characteristics of CBM production.Bycomparing the current situation of CBM exploitation in China with that in the United States,the current technology and characteristics of the CBM exploitation in China were summarizedand the major technical problems of coal mine gas control and CBM exploitationanalyzed.It was emphasized that the CBM exploitation in China should adopt the coalmine gas drainage method coordinated with coal mine exploitation as the main model.Itwas proposed that coal mine gas control should be coordinated with coal mine gas exploitation.The technical countermeasure should be integrating the exploitation of coal andCBM and draining gas before coal mining. 展开更多
关键词 control of coal mine gas coordinated exploitation coal bed methane technical countermeasures
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Characteristics and applications of gas desorption with excavation disturbances in coal mining 被引量:31
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作者 Jiachen Wang 《International Journal of Coal Science & Technology》 EI 2015年第1期30-37,共8页
According to the deficiency of experiment system for gas adsorption and desorption in coal mass, a large scale experiment system is developed independently by researchers. This experiment system is composed of primary... According to the deficiency of experiment system for gas adsorption and desorption in coal mass, a large scale experiment system is developed independently by researchers. This experiment system is composed of primary and auxiliary boxes, power transmission system, mining system, loading system, gas charging system, data monitoring and intelligent acquisition system. The maximum experiment coal consumption is 1200 kg, the mining system is developed to conduct experiment for gas desorption under excavating disturbance, and the plane-charging cribriform ventilation device is developed to realize uniform ventilation for experiment coal sample, which is accord with the actual gas source situation of coal bed. The desorption characteristics of gas in coal are experimentally studied under the conditions of nature and mining using the experiment system. The results show that, compare with nature condition, the permeability of coal and the velocity of gas desorption could significantly increase under the influence of coal pressure relief and destruction caused by mining, and the degree of gas desorption could somewhat increase too. Finally, pressure relief gas extraction of current seam and adjacent seams after mining in a certain coal mine of Yangquan mining area are introduced, and the gas desorption experiment results is verified by analyzing the effect of gas extraction. 展开更多
关键词 gas adsorption and desorption experimental system MINING gas desorption ~ simultaneous extraction of coal and gas
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Characteristics of compression fracture of "three soft" coal bed by perfusion and gas sucking technique 被引量:4
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作者 WANG Zhi-rong LI Shu-kai WANG Yuan-xiao 《Journal of Coal Science & Engineering(China)》 2011年第1期43-46,共4页
Against the particularity of stratum-structure in "three soft" mine areas, according to rock indoor test and on-site sucking experiment, discussed the characteristics of argillization, compression fracture and sucki... Against the particularity of stratum-structure in "three soft" mine areas, according to rock indoor test and on-site sucking experiment, discussed the characteristics of argillization, compression fracture and sucking technique of soft coal with low permeability. It is clearly pointed out that the gas can be highly effectively sucked only by compression fracture along the occurrence of the coal seam, creating inter-seams crack belt because of the difference of bulgy deformation. After the flooding experiment in the 24080 workface of Pingdingshan No. 10 mine, the average single-bore volume of gas increases from 77 m3 to 7 893 mS, while decay cycle extended from 7 days to 80-90 days. Also, the single-bore extracting rate of gas increases to 33%. 展开更多
关键词 "three soft" coal bed hydraulic fracturing the exploiting and sucking of gas low-carbon economy
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Study on comprehensive gas control techniques and practice in coal mines 被引量:2
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作者 LUO Yong QI Qi 《Journal of Coal Science & Engineering(China)》 2011年第1期69-75,共7页
The origins and main control methods of gas in coal seams were introduced cursorily, and the processes that need to be done in controlling gas, which includes prediction of gas emissions, drainage systems, the means o... The origins and main control methods of gas in coal seams were introduced cursorily, and the processes that need to be done in controlling gas, which includes prediction of gas emissions, drainage systems, the means of prevention of gas outbursts, and some suggestions were put forward. The characteristic of different gas emissions and the corresponding counter measures were presented, and & case study of simultaneous extraction of coal and gas in Xieyi Coal Mine was carried out by coal mining and gas extraction without coal-pillar. The field application shows that gas drainage ratio in panel 5121(0) averages about 90% and reaches as high as 95~/0, which will give beneficial references to gas control in coal mines. 展开更多
关键词 gas control gas outburst simultaneous extraction of coal and gas gas drainage
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Experimental investigation into stress-relief characteristics with upward large height and upward mining under hard thick roof 被引量:21
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作者 Ke Yang Xiang He +3 位作者 Litong Dou Wenjun Liu Li Sun Haisong Ye 《International Journal of Coal Science & Technology》 EI 2015年第1期91-96,共6页
According to geological conditions of No. 3 and No. 4 coal seams (namely A3 and B4) of the Pan'er coal mine and the parameters of panels 11223, 11224, and 11124 with fully-mechanical coal mining, we built 2D simila... According to geological conditions of No. 3 and No. 4 coal seams (namely A3 and B4) of the Pan'er coal mine and the parameters of panels 11223, 11224, and 11124 with fully-mechanical coal mining, we built 2D similar material simulation and FLAC3D numerical simulation models to investigate the development of mining-induced stress and the extraction effect of pressure-relief gas with large height and upward mining. Based on a comprehensive analysis of experimental data and observations, we obtained the deformation and breakage characteristics of strata overlying the coal seam, the development patterns of the mining-induced stress and fracture, and the size of the stress-relief area. The stress-relief effect was investigated and analyzed in consideration with mining height and three thick hard strata. Because of the group of three hard thick strata located in the main roof and the residual stress of mined panel 11124, the deformation, breakage, mining-induced stress and fracture development, and the stress-relief coefficient were discontinuous and asymmetrical. The breakage angle of the overlying strata, and the compressive and expansive zones of coal deformation were mainly controlled by the number, thickness, and strength of the hard stratum. Compared with the value of breakage angle derived by the traditional empirical method, the experimental value was lower than the traditional results by 3°-4°below the hard thick strata group, and by 13°-19° above the hard thick strata group. The amount of gas extracted from floor drainage roadway of B4 over 17 months was variable and the amount of gas per month differed considerably, being much smaller when panel 11223 influenced the area of the three hard thick strata. Generally, the stress-relief zone of No. 4 coal seam was small under the influence of the hard thick strata located in the main roof, which played an important role in delaying the breakage time and increasing the breakage space. In this study we gained understanding of the stress-relief mechanism influenced by the hard thick roof. The research results and engineering practice show that the main roof of the multiple hard thick strata is a critical factor in the design of panel layout and roadways for integrated coal exploitation and gas extraction, provides a theoretical basis for safe and high-efficient mining of coal resources. 展开更多
关键词 Integrated coal exploitation and gas extraction Large mining height Stress-relief effect Hard thick strata Mining-induced stress
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Study on Critical,Modern Technology for Mining in Gassy Deep Mines 被引量:10
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作者 YUAN Liang 《Journal of China University of Mining and Technology》 EI 2007年第2期226-231,共6页
To achieve safe and highly efficient mining in the gassy, deep mines of the Huainan collieries simultaneous coal and gas extraction, and the corresponding ventilation methods were developed. This includes a set of min... To achieve safe and highly efficient mining in the gassy, deep mines of the Huainan collieries simultaneous coal and gas extraction, and the corresponding ventilation methods were developed. This includes a set of mining procedures and principles which help insure safe and efficient production. Furthermore, green mining, meaning the comprehensive use of emitted gas, proper treatment of the environment and appropriate mine temperature control, is now standard. The concepts of modem mining and the principles of pressure relief are described. Coal-gas simultaneous ex- traction and multi-pressure relief techniques were developed which require a combination of surface and underground gas extraction. The application of Y-ventilation systems, of roadways retained along goafs, of stress control techniques for highly fragile mine roofs and of powerful, automatic and reliable mining equipment contributes to safe operation of modem deep mines. Operating parameters for these techniques are described and the results of their use discussed. 展开更多
关键词 gassy deep mining modem mining intrinsic safety coal and gas simultaneous extraction green mining
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Experimental study on supporting technology of gob-side entry with different roof conditions 被引量:3
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作者 LUO Yong 《Journal of Coal Science & Engineering(China)》 2012年第3期238-246,共9页
Aiming to effectively solve the problem of deep mining with safety and high efficiency, according to geological conditions, production and stress analysis in roadway surrounding rock, experimental studies on roadway s... Aiming to effectively solve the problem of deep mining with safety and high efficiency, according to geological conditions, production and stress analysis in roadway surrounding rock, experimental studies on roadway supporting of workface 103 under three types of roof conditions with different supporting technologies and parameters were carried out based on the theory of supporting technology of gob-side entry. The results show the supporting of gob-side entry retaining is successful, and the deep surrounding rock is effectively controlled by field monitoring and drilling-hole photos. After stress in surrounding rock of roadways restores stable, the final roadway deformation of surrounding rock of haulage roadway and air-roadway are both about 300 mm; width of gob-side entry is 3.8-4.0 m and average height is 2.0-2.2 m; roadway section is above 8.0 m^2, which solves the problems of gob-side entry retaining support strength and safe mining; necessary conditions of mining safety in workface 103 are met. 展开更多
关键词 simultaneous extraction of coal and gas gob-side entry retaining SUPPORTING safe and high efficient mining
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我国煤与瓦斯共采:理论、技术与工程 被引量:240
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作者 谢和平 周宏伟 +1 位作者 薛东杰 高峰 《煤炭学报》 EI CAS CSCD 北大核心 2014年第8期1391-1397,共7页
针对我国煤层低渗透、强吸附的特点,系统分析总结了我国煤与瓦斯共采基础理论与关键技术的研究现状与最新进展。在基础理论研究方面,着重阐释了采动力学及瓦斯增透理论的定量评价理论体系;在关键技术研究方面,重点介绍了卸压开采抽采瓦... 针对我国煤层低渗透、强吸附的特点,系统分析总结了我国煤与瓦斯共采基础理论与关键技术的研究现状与最新进展。在基础理论研究方面,着重阐释了采动力学及瓦斯增透理论的定量评价理论体系;在关键技术研究方面,重点介绍了卸压开采抽采瓦斯技术体系、全方位立体式抽采瓦斯技术体系、深部薄厚煤层瓦斯抽采技术体系的技术组成与最新科研进展。进一步指出了建立煤与瓦斯共采理论体系所面临的难题与挑战,展望了煤与瓦斯共采未来的发展方向。 展开更多
关键词 煤与瓦斯共采 基础理论 工程技术 最新进展
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煤与瓦斯共采中煤层增透率理论与模型研究 被引量:78
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作者 谢和平 高峰 +2 位作者 周宏伟 程红梅 周福宝 《煤炭学报》 EI CAS CSCD 北大核心 2013年第7期1101-1108,共8页
地下开采中瓦斯抽采的针对性与有效性是煤与瓦斯共采的关键问题,其核心是在理论和技术上对采动引起的裂隙网络所形成的增透性进行定义和分析。在综合考虑煤体在不同开采方式形成的支承压力、孔隙压力和瓦斯吸附膨胀耦合作用对损伤裂隙... 地下开采中瓦斯抽采的针对性与有效性是煤与瓦斯共采的关键问题,其核心是在理论和技术上对采动引起的裂隙网络所形成的增透性进行定义和分析。在综合考虑煤体在不同开采方式形成的支承压力、孔隙压力和瓦斯吸附膨胀耦合作用对损伤裂隙煤体体积改变的影响的基础上,定义了一个新力学量——增透率,来反映单位体积改变下煤体渗透率的变化,推导了4种增透率的理论表达式,并对工程实例进行数值分析,定量描述了开采过程中覆岩和煤层中增透率的分布和演化,结果表明增透率能够反映开采扰动对煤岩体裂隙网络渗透性的影响,为煤与瓦斯共采工程中的煤层增透效果评价提供定量指标和科学方法。 展开更多
关键词 煤与瓦斯共采 增透率 渗透性 支承压力 体积应变
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煤与瓦斯共采技术的研究现状及其应用发展 被引量:77
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作者 吴财芳 曾勇 秦勇 《中国矿业大学学报》 EI CAS CSCD 北大核心 2004年第2期137-140,共4页
论述了煤与瓦斯共采技术的重要性及其对煤矿绿色开采的意义,介绍了煤与瓦斯共采技术的研究现状及面临的新问题,并阐明了其理论依据.分析了煤与瓦斯共采在煤矿井下的成功经验,并举例说明了井下瓦斯抽放与地面煤层气开发有机结合的重要性... 论述了煤与瓦斯共采技术的重要性及其对煤矿绿色开采的意义,介绍了煤与瓦斯共采技术的研究现状及面临的新问题,并阐明了其理论依据.分析了煤与瓦斯共采在煤矿井下的成功经验,并举例说明了井下瓦斯抽放与地面煤层气开发有机结合的重要性.最后指出了煤与瓦斯共采应注意的问题以及今后的研究方向. 展开更多
关键词 煤层气 瓦斯抽放 绿色开采 井下开采
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采动过程中瓦斯抽采流量与煤层支承应力的相关性 被引量:22
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作者 尹光志 何兵 +3 位作者 李铭辉 曹偈 秦虎 李文璞 《煤炭学报》 EI CAS CSCD 北大核心 2015年第4期736-741,共6页
煤层中的瓦斯流动是一个瓦斯气体运移与煤层固体变形之间相互耦合的复杂过程。以松藻煤电有限责任公司松藻煤矿3211采煤工作面现场试验为基础,通过现场监测工作面采动过程中的煤层支承应力变化和本煤层瓦斯抽采流量变化,对工作面附近煤... 煤层中的瓦斯流动是一个瓦斯气体运移与煤层固体变形之间相互耦合的复杂过程。以松藻煤电有限责任公司松藻煤矿3211采煤工作面现场试验为基础,通过现场监测工作面采动过程中的煤层支承应力变化和本煤层瓦斯抽采流量变化,对工作面附近煤层支承应力和瓦斯抽采流量之间的相关性进行了研究。研究结果表明:随着采煤工作面的推进,煤层实测支承应力依次经历了低—高—低的过程,可以划分为卸压区、应力集中区和原岩应力区,并在工作面前方15~25 m处达到峰值。在煤层卸压区,煤层内孔隙、裂隙发育贯通,透气性增大,瓦斯抽采流量增大,在煤层支承应力集中区,煤层内裂隙收缩闭合,煤层透气性减小,瓦斯抽采流量也减小,在煤层原岩应力区,煤层透气性变化不大,瓦斯抽采流量趋于稳定。基于工作面煤层支承应力与瓦斯抽采流量的相互关系,以处于原岩应力区的煤层支承应力和瓦斯抽采流量为基准,构建了瓦斯抽采流量的负指数表达式。 展开更多
关键词 支承应力 瓦斯抽采流量 相关性 煤与瓦斯共采
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远距离煤层开采工作面布置方式卸压增透效应 被引量:6
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作者 肖家平 杨科 +1 位作者 李志华 孙泽宏 《中国安全科学学报》 CAS CSCD 北大核心 2019年第3期82-88,共7页
为了研究远距离煤层上行开采工作面布置方式对卸压增透效果的影响,根据潘二煤矿11223工作面地质条件,通过FLAC^(3D)数值模拟软件研究远距离煤层卸压开采应力场、位移场、裂隙场分布特征,并以卸压系数为判据,确定工作面卸压增透范围。研... 为了研究远距离煤层上行开采工作面布置方式对卸压增透效果的影响,根据潘二煤矿11223工作面地质条件,通过FLAC^(3D)数值模拟软件研究远距离煤层卸压开采应力场、位移场、裂隙场分布特征,并以卸压系数为判据,确定工作面卸压增透范围。研究表明:西二段工作面采用垂直布置方式,下方11223工作面开采会引起上覆11224工作面位移场、应力场发生明显变化,11224工作面中部卸压系数达90. 37%,卸压效果良好;东一段11224工作面采用风巷外错90 m、机巷内错90 m的方式布置,导致11224工作面下部卸压系数88. 97%,卸压效果较好,而在工作面上部卸压效果不明显。通过对比,可以确定远距离煤层上行开采时,工作面采用垂直布置可获得更好的卸压增透效果。 展开更多
关键词 煤与瓦斯共采 卸压系数 保护层开采 卸压增透效应 远距离煤层
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我国深部煤与瓦斯共采战略思考 被引量:429
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作者 袁亮 《煤炭学报》 EI CAS CSCD 北大核心 2016年第1期1-6,共6页
我国是世界上瓦斯灾害最严重的国家之一,煤炭资源禀赋与长期的旺盛需求导致我国煤炭开发以每年10~25 m的速度快速向深部转移,深部煤炭开采面临的瓦斯问题更加严峻,从安全、能源、环保3个方面考虑,都需要加大深部煤层煤与瓦斯共采力度... 我国是世界上瓦斯灾害最严重的国家之一,煤炭资源禀赋与长期的旺盛需求导致我国煤炭开发以每年10~25 m的速度快速向深部转移,深部煤炭开采面临的瓦斯问题更加严峻,从安全、能源、环保3个方面考虑,都需要加大深部煤层煤与瓦斯共采力度。分析了我国深部煤层煤与瓦斯共采现状与面临的问题,指出了我国深部煤层煤与瓦斯共采发展对策,认为我国深部煤层应坚持地面和井下相结合的"两条腿走路"的煤与瓦斯共采模式,从基础理论研究、关键技术及装备研发、示范工程建设、政策扶持等方面提高深部煤层煤与瓦斯共采技术整体水平。 展开更多
关键词 深部开采 煤与瓦斯共采 科技发展 战略
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我国煤与瓦斯共采技术现状及展望 被引量:2
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作者 简煊祥 李云飞 林毅 《山西焦煤科技》 2011年第6期23-27,共5页
煤层瓦斯是矿井发生瓦斯爆炸和瓦斯突出灾害事故的根源,是高产高效矿井建设过程中的主要障碍,实践证明,煤与瓦斯共采能够有效减少矿井瓦斯灾害,实现煤矿安全绿色开采,但是现有煤与瓦斯共采理论和技术仍存在许多不足亟待解决。在介绍煤... 煤层瓦斯是矿井发生瓦斯爆炸和瓦斯突出灾害事故的根源,是高产高效矿井建设过程中的主要障碍,实践证明,煤与瓦斯共采能够有效减少矿井瓦斯灾害,实现煤矿安全绿色开采,但是现有煤与瓦斯共采理论和技术仍存在许多不足亟待解决。在介绍煤与瓦斯共采理论基础与技术现状的基础上,结合煤与瓦斯共采技术的应用实例,提出了煤与瓦斯共采技术现存问题,并对此提出了展望。 展开更多
关键词 绿色开采 煤层瓦斯 瓦斯抽放 煤与瓦斯共采
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典型开采条件下煤与瓦斯共采实践与思考 被引量:4
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作者 任波 薛俊华 +4 位作者 余国锋 陈本良 邓东生 周伟 杜振宇 《能源与环保》 2018年第3期174-179,共6页
针对我国煤层瓦斯高应力、高瓦斯压力、高瓦斯含量及低渗透性赋存特点,从煤层瓦斯抽采基础理论、技术方法及环境与安全效益等方面,系统分析总结了我国煤与瓦斯共采理论与技术进展,介绍了松软低透煤层群、高瓦斯原生结构煤层、山区松软... 针对我国煤层瓦斯高应力、高瓦斯压力、高瓦斯含量及低渗透性赋存特点,从煤层瓦斯抽采基础理论、技术方法及环境与安全效益等方面,系统分析总结了我国煤与瓦斯共采理论与技术进展,介绍了松软低透煤层群、高瓦斯原生结构煤层、山区松软低渗突出煤3种典型开采条件下煤与瓦斯共采技术体系与应用实践,进一步指出了我国煤与瓦斯共采面临的问题与挑战,认为我国应坚持煤与瓦斯共采的科学开采方法,从基础理论研究、关键技术及装备研发及示范工程建设方面提高煤与瓦斯精准共采技术整体水平,实现不同开采条件下煤层瓦斯资源的有效开发利用。 展开更多
关键词 煤炭开采 瓦斯抽采 煤与瓦斯共采 卸压抽采 立体抽采
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底抽巷“一巷三用”煤与瓦斯共采技术 被引量:13
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作者 阴永生 年军 吕晓波 《煤矿安全》 北大核心 2017年第6期149-151,155,共4页
针对马兰矿高瓦斯工作面上隅角瓦斯浓度偏高问题,结合其近距离煤层的地质及回采条件,通过在8~#煤下邻近层9~#煤层内布置底抽巷,既可作为后期开采9#煤时的回采巷道,有利于采掘衔接,又可截抽下邻近层卸压瓦斯和预抽本煤层瓦斯,再又抽采高... 针对马兰矿高瓦斯工作面上隅角瓦斯浓度偏高问题,结合其近距离煤层的地质及回采条件,通过在8~#煤下邻近层9~#煤层内布置底抽巷,既可作为后期开采9#煤时的回采巷道,有利于采掘衔接,又可截抽下邻近层卸压瓦斯和预抽本煤层瓦斯,再又抽采高位裂隙带内瓦斯和现采空区的瓦斯。马兰矿将该技术在18301工作面得以实践,取得了良好的抽采效果。 展开更多
关键词 底抽巷 “一巷三用” 煤与瓦斯共采 分源抽采 瓦斯抽采
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