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Practice and prospects of fully mechanized mining technology for thin coal seams in China

机译:中国薄煤层综采技术的实践与展望

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In China, thin coal seams are rich in resources but are technically challenging. The mineable reserves in these seams account for 20.4% of the total coal resources, while the current production accounts for only 10.4% of the total annual production. Characteristics such as narrow mining space, low level of mechanization, poor working environment, and high cost of mining, restrict the development of mining safety and efficiency. Recently, fully mechanized mining technology has developed rapidly for thin coal seams, the level of yield and efficiency has reached or exceeded the international standard, and some state-owned key coal mines are considering automation of their mining process. In thin coal seams with hard stone bands that contain concentrations of pyrite, a specialized software, LS-DYNA, is used to calculate the rational blasting parameters that are used in the deep-hole pre-splitting blasting. Using this method the hard stone bands are fractured effectively, and hence increasing the coal productivity. In addition, ruining advance rate were increased by enhancing the level of fully mechanized equipment and safety unproved by increasing gas drainage from the gas outburst prone seam located some 7 m below the coal horizon. At present, thin coal seam mining technology faces many challenges, including the low level of equipment automation, the low advance rate in mixed coal-rock ground, and the large number of the mine personnel underground. By lowering the labour intensity and improving efficiency through automation and other measures, more efficient working faces can be implemented in thin coal seams.
机译:在中国,薄煤层资源丰富,但在技术上存在挑战。这些煤层的可采储量占煤炭资源总量的20.4%,而目前的产量仅占年度产量的10.4%。采矿空间狭窄,机械化程度低,工作环境差,采矿成本高等特点限制了采矿安全性和效率的发展。近来,薄煤层的综采技术发展迅速,产量和效率水平达到或超过了国际标准,一些国有重点煤矿正在考虑对其采矿过程进行自动化。在带有坚硬带状黄铁矿的薄煤层中,使用专用软件LS-DYNA计算深孔预裂爆破中使用的合理爆破参数。使用这种方法可以有效地破碎硬石带,从而提高煤炭生产率。此外,通过提高全机械设备的水平来提高破坏提前率,并通过增加位于煤层以下约7 m的易突出瓦斯煤层的瓦斯抽放来提高安全性。当前,薄煤层开采技术面临着许多挑战,包括设备自动化水平低,煤岩混合地面推进率低,地下矿山人员众多。通过降低劳动强度并通过自动化和其他措施提高效率,可以在薄煤层中实现更有效的工作面。

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