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国家自然科学基金(50904068)

作品数:7 被引量:94H指数:5
相关作者:程远平王海锋刘敬敬刘清泉刘洪永更多>>
相关机构:中国矿业大学江苏省安全生产科学研究院更多>>
发文基金:国家自然科学基金国家重点基础研究发展计划中国矿业大学青年科技基金更多>>
相关领域:矿业工程更多>>

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7 条 记 录,以下是 1-8
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一种新型的煤矿井下矿灯充电系统设计
为了解决煤矿井下利用插电板为矿灯等用电设备供电存在的安全隐患等问题,提出了一种新型的矿灯无线充电系统。这种系统利用电磁感应原理,实现了用电设备的无线供电。介绍了这种新型充电系统的拓扑结构和工作原理,通过系统建模,对系统进...
周跃进汪云甲夏雯
关键词:煤矿井下充电电磁感应
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下保护层开采上覆煤岩体采动效应及卸压范围扩界研究被引量:11
2013年
基于FLAC3D数值模拟方法,研究了下保护层开采上覆煤岩体的采动效应,得出下保护层开采上覆煤岩体的应力分布特征、位移变化规律和被保护层的卸压范围。研究结果表明,上覆煤岩体卸压程度、应力集中程度和卸压范围均与层间距有关,层间距越大,卸压程度和应力集中程度均越小,最大应力集中位置越倾向于采空区,相应的卸压范围也越小。从应力应变和瓦斯流动角度,将被保护层进行了划分,并对上覆煤岩体的水平移动规律进行了总结。工程实践表明,在非充分卸压区施工密集钻孔,经较长时间的强化抽采,可消除非充分卸压区的突出危险性,达到被保护层扩界的目的。
刘彦伟李国富
关键词:下保护层采动效应卸压范围
顺层钻孔有效瓦斯抽采半径数值解算方法研究被引量:45
2012年
为了寻求皖北某矿合理的顺层钻孔抽采参数,使用COMSOL Multiphysics软件分别建立单个钻孔和多个钻孔抽采瓦斯的径向流动模型,通过数值模拟计算出钻孔周围瓦斯流动规律。建立的流动模型将游离瓦斯及吸附瓦斯分开考虑,在煤层中,参与渗流的为游离瓦斯,吸附瓦斯对裂隙系统而言为正的质量源,对现有二维瓦斯渗流模型进行了一定程度的修正。根据钻孔周围瓦斯压力分布规律分析单个钻孔不同抽采时间时的有效抽采半径,并分析多钻孔条件下相邻钻孔的相互影响规律。
刘清泉程远平王海锋刘洪永刘敬敬
关键词:顺层钻孔瓦斯抽采数值模拟MULTIPHYSICS
祁南煤矿72^#煤层钻屑瓦斯解吸指标敏感性分析被引量:10
2012年
为了确定祁南煤矿72#煤层钻屑瓦斯解吸指标的敏感性,采用实验室实验和现场统计分析相结合的方法进行研究。通过实验室模拟现场测定指标,掌握钻屑瓦斯解吸指标与吸附平衡压力之间的关系,结合煤层区域预测指标(瓦斯压力)得到指标的参考临界值。以714运输巷为考察对象,采用现场实测方法研究指标的分布规律和相关性,并利用临界值迫近度法对敏感性进行定量分析,结果表明:在突出危险性预测和效果检验工作中,祁南煤矿72#煤层钻屑瓦斯解吸指标Δh2相对K1敏感性更高,可作为主要预测指标。
翟清伟程远平王亮周红星舒龙勇
关键词:敏感性
贺西煤矿瓦斯灾害综合防治技术体系研究被引量:4
2014年
针对贺西煤矿矿井煤层瓦斯赋存及地质条件,采取基于保护层开采技术的煤层瓦斯治理措施,以消除其突出危险性。在抽采钻孔的布置及抽采形式方面,形成了地面钻孔抽采与井下钻孔抽采相结合,卸压抽采与预抽相结合,穿层钻孔与顺层钻孔相结合,采前抽采与采中抽采相结合的立体瓦斯抽采模式,结合各煤层工作面采取的不同通风方式,取得了显著的瓦斯抽采效果,实现了矿井的安全高效开采。
赫崇国王海锋王伟
关键词:瓦斯抽采保护层开采通风方式
Characteristics of fracture development and gas extraction of a lower protected seam
2009年
To ensure the mining safety of working face in the protective seam and meanwhile extract pressure-relief gas of the lower protected seam and eliminate its outburst risk,the present study researched into fracture development of floor coal-rock mass of the protective seam and migration rule of pressure-relief gas from a protected seam so as to obtain an effective pressure- relief gas extraction method.The results show that after the upper protective seam was mined,mining-induced fracturing floor coal-rock mass fell into two zones:a floor heave fracture zone and a floor heave deformation zone.Lower protected seams located at different fracture subzones were different in the degree and characteristics of fracture development,and penetration borehole drilling from the floor roadway effectively extracted pressure-relief gas.The engineering practice of the Hongling coal mine in Shenyang indicated that for a lower protected seam in the floor heave fracture zone,taking the one time seam spacing(16 m)as the spacing between penetration boreholes ensured the mining safety of the No.321 working face in the protective seam and completely eliminated the outburst risk of the lower protected seam,the No.12 coal seam.
王海锋
窑街煤田CO_2成因及成藏模式研究被引量:11
2011年
为有效防治窑街煤田煤与CO2突出,基于煤二层中CO2成因、成藏过程对防治突出的重要性,采用对煤二层中CO2气样的碳同位素偏差值、氦同位素比值实验测定分析方法,探讨了F19断裂带演化过程、岩浆活动以及构造岩分布特征,提出了CO2的来源与运移、成藏过程.结果表明:煤二层中CO2为无机壳源,F19断裂带脆-韧性剪切动力变质作用生成CO2为煤层CO2的具体来源,F19断裂在CO2成藏过程中起到了成气断裂、储气断裂、圈闭断裂的作用,结合无机CO2成藏模式研究,窑街煤田CO2为由F19断裂带成气、输导作用下的直接成藏模式,运移至断裂中高压储存的CO2不断的向煤二层运移,并在良好的圈闭条件下富集成藏.
李伟程远平杨云峰王立国陈海栋杨跃奎
关键词:CO2成因成藏模式同位素
Regional gas drainage techniques in Chinese coal mines被引量:13
2012年
China's rapid economic development has increased the demand for coal.These results in Chinese coal mines being extended to deeper levels.The eastern Chinese,more economical developed,regions have a long history of coal mining and many coal mines have now started deep mining at a depth from 800 to 1500 m.This increase in mining depth,geostresses,pressures,and gas content of the coal seam complicates geologic construction conditions.Lower permeability and softer coal contribute to increasing numbers of coal and gas outburst,and gas explosion,disasters.A search on effective methods of preventing gas disasters has been provided funds from the Chinese government since 1998.The National Engineering Research Center of Coal Gas Control and the Huainan and Huaibei Mining Group have conducted theoretical and experimental research on a regional gas extraction technology.The results included two important findings.First,grouped coal seams allow adoption of a method where a first,key protective layer is mined to protect upper and lower coal seams by increasing permeability from 400 to 3000 times.Desorption of gas and gas extraction in the protected coal seam of up to 60%,or more,may be achieved in this way.Second,a single seam may be protected by using a dense network of extraction boreholes consisting of cross and along-bed holes.Combined with this is increased use of water that increases extraction of coal seam gas by up to 50%.Engineering practice showed that regional gas drainage technology eliminates regional coal and gas outburst and also enables mining under low gas conditions.These research results have been adopted into the national safety codes of production technology.This paper systematically introduces the principles of the technology,the engineering methods and techniques,and the parameters of regional gas drainage.Engineering applications are discussed.
Wang HaifengCheng YuanpingWang Lei
关键词:GASOUTBURSTGASSEAMGASDENSEBOREHOLE
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