期刊文献+
共找到5篇文章
< 1 >
每页显示 20 50 100
基于高瓦斯矿井的瓦斯地面抽采技术方案研究与应用
1
作者 韩瑞达 《地质装备》 2024年第4期43-47,共5页
煤层气(瓦斯)是吸附在煤层中的伴生矿产资源,合理开发煤层气对于清洁能源开发和煤矿安全生产具有重大意义。然而,高浓度瓦斯使得矿井爆炸风险提高,同时增大了煤矿采掘难度。为此,本文以某高瓦斯矿井3号煤层为研究对象,着眼于瓦斯地面抽... 煤层气(瓦斯)是吸附在煤层中的伴生矿产资源,合理开发煤层气对于清洁能源开发和煤矿安全生产具有重大意义。然而,高浓度瓦斯使得矿井爆炸风险提高,同时增大了煤矿采掘难度。为此,本文以某高瓦斯矿井3号煤层为研究对象,着眼于瓦斯地面抽采整体流程,总结出一套钻井-压裂-排采的抽采技术方案。首先,通过含气测定和相关试验分析其含气量、渗透率、孔隙率、储层压力等煤层条件;其次,针对该地区煤层特点,通过优化钻井、压裂和排采的技术方法,提出高瓦斯矿井瓦斯地面抽采技术方案,并进行现场试验。现场试验表明,该优化方案不仅确保了煤矿的安全生产,同时在经济和环保方面也取得了显著成果。 展开更多
关键词 瓦斯矿井 定向井水力压裂 支撑剂优化 瓦斯排采
下载PDF
综采工作面上隅角瓦斯治理方法在寺河矿的应用 被引量:7
2
作者 贺光会 《煤矿现代化》 2017年第5期25-27,30,共4页
为了缓解寺河矿5302综采工作面上隅角瓦斯浓度超限对安全生产的制约,对寺河矿综采工作面上隅角瓦斯治理方法进行了探讨。通过对上隅角瓦斯治理不同方法进行对比分析,认为联合使用提高综采工作面采空区瓦斯抽采量法与减少综采工作面采空... 为了缓解寺河矿5302综采工作面上隅角瓦斯浓度超限对安全生产的制约,对寺河矿综采工作面上隅角瓦斯治理方法进行了探讨。通过对上隅角瓦斯治理不同方法进行对比分析,认为联合使用提高综采工作面采空区瓦斯抽采量法与减少综采工作面采空区瓦斯风排量法是安全可靠且具有经济效益的治理方法。通过现场实践了高位钻孔、中位钻孔、低位钻孔抽采采空区瓦斯方法,提高了抽采效果;通过封闭尾巷横川提高通风系统的稳定性与可靠性,工作面风排瓦斯量、上隅角瓦斯浓度显著降低。现场应用治理效果较显著。且该方法对提高矿井通风能力,促进矿井安全生产具有重要指导意义。 展开更多
关键词 工作面 上隅角瓦斯治理 空区瓦斯 空区瓦斯 矿井通风能力
下载PDF
Patterns and security technologies for co-extraction of coal and gas in deep mines without entry pillars 被引量:5
3
作者 Nong Zhang Fei Xue Nianchao Zhang Xiaowei Feng 《International Journal of Coal Science & Technology》 EI 2015年第1期66-75,共10页
Retaining gob-side entryways and the stability of gas drainage boreholes are two essential techniques in the co-extraction of coal and gas without entry pillars (CECGWEP). However, retained entryways located in deep... Retaining gob-side entryways and the stability of gas drainage boreholes are two essential techniques in the co-extraction of coal and gas without entry pillars (CECGWEP). However, retained entryways located in deep coal mines are hard to maintain, especially for constructing boreholes in confined spaces, owing to major deformations. Consequently, it is difficult to drill boreholes and maintain their stability, which therefore cannot guarantee the effectiveness of gas drainage. This paper presents three measures for conducting CECGWEP in deep mines on the basis of effective space in retained entryways for gas drainage, They are combinations of retaining roadways and face-lagging inclined boreholes, retaining roadways and face-advancing inclined boreholes, and retaining roadways and high return airway inclined boreholes. Several essential techniques are suggested to improve the maintenance of retained entryways and the stabilization of boreholes. For the particular cases considered in this study, two field trials have verified the latter two measures from the results obtained from the faces 1111(1) and 11112(1) in the Zhuji Mine. The results indicate that these models can effectively solve the problems in deep mines. The maximum gas drainage flow for a single hole can reach 8.1 m^3/min and the effective drainage distance can be extended up to 150 m or more. 展开更多
关键词 Retaining gob-side entryways Stability of borehole Gas pressure relief Co-extraction of coal and gas without the entry pillar
下载PDF
Simulation of goaf heating law and the fire cooling effect during methane drainage in high level laneway 被引量:2
4
作者 Xing-Kui LIU Hong-Qing ZHU Peng-Fei LIU 《Journal of Coal Science & Engineering(China)》 2013年第3期325-331,共7页
For spontaneous combustion possibilities under large flux methane drainage in the goal, dynamic permeability in combination with the Forchheimer nonlinear equation was used to solve the problem of 3D oxygen distributi... For spontaneous combustion possibilities under large flux methane drainage in the goal, dynamic permeability in combination with the Forchheimer nonlinear equation was used to solve the problem of 3D oxygen distribution, heating law in goaf and to forecast the effects of fire protection by taking the fifth section face of the No. 18 coal seam in Nanshan Coal Mine as the basis for this study. The results demonstrate that if the vertical position of the drainage laneway is so low as to cause serious air leakage, a high oxygen concentration area exists in the return side of the goaf, and there is also a high temperature region which has faster heating rate than in the other areas. The effect of methane drainage on goal heating can be alleviated dramatically by simultaneous plugging and nitrogen injection. The results show that gas data in the return side of the goaf must be detected carefully in the work face, which is of similar drainage arrangement. Therefore, comprehensive fire protection measures should be carried out if conditions permit. 展开更多
关键词 spontaneous combustion drainage laneway high temperature region HEATING fire protection
下载PDF
The Effectiveness of the Methane Drainage of the Rock-Mass with a Parallel Ventilation Heading during Longwall Mining
5
作者 Nikodem Szlazak Marek Borowski Justyna Swolkien 《Journal of Energy and Power Engineering》 2014年第11期1876-1888,共13页
Methane drainage is used in Polish coal mines in order to reduce mine methane emission as well as to keep methane concentration in mine workings at safe levels. This article describes the method of methane drainage us... Methane drainage is used in Polish coal mines in order to reduce mine methane emission as well as to keep methane concentration in mine workings at safe levels. This article describes the method of methane drainage used in longwall 2 in seam 506. In Poland, coal seams are frequently mined in difficult conditions of very high methane hazard. Under such situations, methane is drained by means of parallel ventilation headings. This paper shows the influence of a specific ventilation system on the drainage efficiency at longwall 2 in seam 506. At this longwall, measurements of methane emission and the efficiency of drained methane were conducted. They consisted in gauging methane concentration, air velocity, absolute air pressure and the amount of methane removed via a drainage system. Experimental data were used to estimate the variations in absolute methane-bearing capacity, ventilation air methane and most importantly, to gauge the efficiency of methane drainage. 展开更多
关键词 Methane hazard methane drainage ventilation system effectiveness of methane drainage.
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部