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Theory and practice of fully mechanized longwall mining in steeply dipping coal seams

机译:急倾斜煤层综采的理论与实践。

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摘要

Mining steeply dipping coal seams is a difficult task. Prior to 1996, fully mechanized longwall mining methods along the seam strike direction were tried in China and other countries. Due to its larger coal reserve in steep seams, China made more, but still limited, progress on mining such seams than other major coal-mining countries. In the last two decades, accelerated research efforts have tried to improve the mining technology in steeply dipping coal seams. Based on this work, a dynamic model of a roof-support-floor (R-S-F) system under asymmetrical constraints in mining steep seams is established here, and a theory of strata control and hazard prevention is formed. The key technologies for mining steep coal seams include global and regional strata control methods in the longwall face; methods for the longwall face machines to sustain static and dynamic loads; and flexible protection technology. These theories and technologies have been successfully applied in China to the mining of steep coal seams of varying thickness and hardness, with hard and soft roof and floor, and with a high potential for spontaneous combustion. In recent years, the technology has been introduced to Russia, India, Uzbekistan and other countries where steep coal seams are mined.
机译:开采陡峭的煤层是一项艰巨的任务。在1996年之前,在中国和其他国家尝试了沿煤层走向的综采长壁开采方法。由于其在陡峭煤层中的煤炭储量更大,中国在开采此类煤层方面取得了比其他主要煤矿国家更多但仍有限的进步。在过去的二十年中,加速的研究努力试图改善陡倾煤层的开采技术。在此基础上,建立了陡峭煤层不对称约束下顶板-底板(R-S-F)系统的动力学模型,形成了地层控制与危害防治的理论。开采陡峭煤层的关键技术包括长壁工作面的全球和区域地层控制方法。长壁端面机承受静态和动态载荷的方法;灵活的保护技术。这些理论和技术已经在中国成功地应用于具有不同厚度和硬度,具有坚硬的软顶和底板且具有高自燃潜力的陡峭煤层的开采。近年来,该技术已被引入俄罗斯,印度,乌兹别克斯坦和其他开采陡峭煤层的国家。

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