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Key technologies and equipment for a fully mechanized top-coal caving operation with a large mining height at ultra-thick coal seams 被引量:61
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作者 Jinhua Wang Bin Yu +4 位作者 Hongpu Kang Guofa Wang Debing Mao Yuntao Liang Pengfei Jiang 《International Journal of Coal Science & Technology》 EI 2015年第2期97-162,共66页
Thick and ultra-thick coal seams are main coal seams for high production rate and high efficiency in Chinese coal mines, which accounts for 44 % of the total minable coal reserve. A fully mechanized top-coal caving mi... Thick and ultra-thick coal seams are main coal seams for high production rate and high efficiency in Chinese coal mines, which accounts for 44 % of the total minable coal reserve. A fully mechanized top-coal caving mining method is a main underground coal extraction method for ultra-thick coal seams. The coal extraction technologies for coal seams less than 14 m thick were extensively used in China. However, for coal seams with thickness greater than 14 m, there have been no reported cases in the world for underground mechanical extraction with safe performance, high efficiency and high coal recovery ratio. To deal with this case, China Coal Technology & Engineering Group, Datong Coal Mine Group, and other 15 organizations in China launched a fundamental and big project to develop coal mining technologies and equipment for coal seams with thicknesses greater than 14 m. After the completion of the project, a coal extraction method was developed for top-coal caving with a large mining height, as well as a ground control theory for ultra-thick coal seams. In addition, the mining technology for top-coal caving with a large mining height, the ground support technology for roadway in coal seams with a large cross-section, and the prevention and control technology for gas and fire hazards were developed and applied. Furthermore, a hydraulic support with a mining height of 5.2 m, a shearer with high reliability, and auxiliary equipment were developed and manufactured. Practical implication on the technologies and equipment developed was successfully completed at the No. 8105 coal face in the Tashan coal mine, Datong, China. The major achievements of the project are summarized as follows: 1. A top-coal caving method for ultra-thick coal seams is proposed with a cutting height of 5 m and a top-coal caving height of 15 m. A structural mechanical model of overlying strata called cantilever beam-articulated rock beam is established. Based on the model, the load resistance of the hydraulic support with a large mining height for top-coal caving method is determined. With the analysis, the movement characteristics of the top coal and above strata are evaluated during top-coal caving operation at the coal face with a large mining height. Furthermore, there is successful development of comprehensive technologies for preventing and controlling spalling of the coal wall, and the top-coal caving technology with high efficiency and high recovery at the top-coal caving face with a large mining height. This means that the technologies developed have overcome the difficulties in strata control, top-coal caving with high efficiency and high coal recovery, and enabled to achieve a production rate of more than 10 Mtpa at a single top-coal caving face with a large mining height in ultra-thick coal seams; 2. A hydraulic support with 5.2 m supporting height and anti-rockburst capacity, a shearer with high reliability, a scraper conveyor with a large power at the back of face, and a large load and long distance headgate belt conveyor have been successfully developed for a top-coal caving face with large mining height. The study has developed the key technologies for improving the reliability of equipment at the coal face and has overcome the challenges in equipping the top-coal caving face with a large mining height in ultra-thick coal seams; 3. The deformation characteristics of a large cross-section roadway in ultra-thick coal seams are discovered. Based on the findings above, a series of bolt materials with a high yielding strength of 500-830 MPa and a high extension ratio, and cable bolt material with a 1 × 19 structure, large tonnage and high extension ratio are developed. In addition, in order to achieve a safe roadway and a fast face advance, installation equipment for high pre-tension bolt is developed to solve the problems with the support of roadway in coal seams for top-coal caving operation with a large mining height; 4. The characteristics of gas distribution and uneven emission at top-coal caving face with large mining height in ultra-thick coal seams are evaluated. With the application of the technologies of gas drainage in the roof, the difficulties in gas control for high intensive top-coal caving mining operations, known as "low gas content, high gas emission", are solved. In addition, large flow-rate underground mobile equipment for making nitrogen are developed to solve the problems with fire prevention and safe mining at a top-coal caving face with large mining height and production rate of more than 10 Mtpa. A case study to apply the developed technologies has been conducted at the No. 8105 face, the Tashan coal mine in Datong, China. The case study demonstrates that the three units of equipment, i.e., the support, shearer and scraper conveyor, are rationally equipped. Average equipment usage at the coal face is 92.1%. The coal recovery ratio at the coal face is up to 88.9 %. In 2011, the coal production at the No. 8105 face reached 10.849 Mtpa, exceeding the target of 10 Mtpa for a topcoal caving operation with large mining height performed by Chinese-made mining equipment. The technologies and equipment developed provide a way for extracting ultra-thick coal seams. Currently, the technologies and equipment are used in 13 mining areas in China including Datong, Pingshuo, Shendong and Xinjiang. With the exploitation of coal resources in Western China, there is great potential for the application of the technologies and equipment developed. 展开更多
关键词 Ultra-thick coal seams top-coal caving mining Large mining height Mining method - Mining equipment roadway support Safety guarantee
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基于金刚石串珠绳锯的急倾斜薄及中厚煤层无人工作面开采方法探索
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作者 汪永印 高林 杨得礼 《煤炭科学技术》 CAS CSCD 北大核心 2023年第3期233-240,共8页
为解决贵州省的“难以实现机械化开采的关键4%煤层”,主要是倾角大于60°的急倾斜薄及中厚煤层机械化开采的难题,首次提出了倾角大于60°的急倾斜薄及中厚煤层基于金刚石串珠绳锯的工作面无人化巷道放顶煤开采方法。系统阐述了... 为解决贵州省的“难以实现机械化开采的关键4%煤层”,主要是倾角大于60°的急倾斜薄及中厚煤层机械化开采的难题,首次提出了倾角大于60°的急倾斜薄及中厚煤层基于金刚石串珠绳锯的工作面无人化巷道放顶煤开采方法。系统阐述了改造广泛应用于地面采石场、桥梁工程等的金刚石串珠绳锯为液压动力的方法,以便满足煤矿井下瓦斯环境的使用要求;分析了基于金刚石串珠绳锯的无人工作面巷道布置系统及通风系统;详细介绍了应用于采煤工作面的金刚石串珠绳的结构特点、安装工艺、切割方法以及回采工艺;研究了金刚石串珠绳锯对倾角大于60°的急倾斜薄及中厚煤层巷道放顶煤工作面煤体与顶底板的分离切割、对煤体内部进行预切割、预破碎的方法,从而达到提高巷道放顶煤无人工作面的区段高度,提高采出率,降低含矸率的目的,进而实现急倾斜薄及中厚煤层的安全高效开采;研究了巷道放顶煤液压支架与金刚石串珠绳锯的工序配合关系以及巷道放顶煤液压支架沿走向布置时与刮板输送机的配合关系;通过与倾角大于60°的急倾斜薄及中厚煤层的其他开采方法的比较,论证了基于金刚石串珠绳锯的急倾斜薄及中厚煤层工作面无人化的高效、安全、机械化开采的可行性及优越性,为后续急倾斜薄及中厚煤层智能化开采方法的研究提供了机械化基础。 展开更多
关键词 急倾斜煤层 金刚石串珠绳锯 预破碎 巷道放顶煤开采 无人工作面
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坪湖煤矿658大工作面防火实践 被引量:1
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作者 朱丰玲 谭建文 +1 位作者 杨成金 周建太 《江西煤炭科技》 2012年第3期4-6,共3页
由于受断层及采空区的应力影响,煤体围岩破碎、顶板不完整、裂隙多,易造成密闭、高冒巷封堵不严密,存在漏风等安全隐患,为此,对密闭、高冒巷进行注浆加固,防止漏风,消灭了煤炭自然发火事故,确保了矿井的安全生产。
关键词 密闭 高冒巷 注浆加固 防火 安全生产
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低浓度瓦斯利用促进了沿沟煤矿瓦斯抽采
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作者 黄文军 汪来春 饶玉平 《江西煤炭科技》 2011年第3期16-18,共3页
为了确保低浓度瓦斯发电项目取得成功,沿沟采取了寻找瓦斯源、优化抽采方案、增加抽采工程量等技术措施,攻克了瓦斯抽采浓度过低、抽采瓦斯量不足的难关,保障了低浓度瓦斯发电项目的正常运行。
关键词 急倾斜煤层 高冒巷 卸压抽采 高位钻孔 护孔抽采
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