Applicable conditions for a classification system of aquifer-protective mining in shallow coal seams

Liu Yude , Zhang Dongsheng , Fan Gangwei , Yan Shoufeng
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引用次数: 6

Abstract

Based on the conclusions of domestic and foreign research, we have analyzed the collapse–fall characteristics of overlying strata and the mechanism of aquifer-protective mining in shallow coal seam working faces at the Shendong Mine. We have selected the height of the water-conducting fracture zone in overlying strata as a composite index and established the applicable conditions of aquifer-protective mining in shallow coal seams with a multi-factor synthetic-index classification method. From our calculations and analyses of variance, we used factors such as the overlying strata strength, mining disturbing factors and rock integrity as related factors of the composite index. We have classified the applicable conditions of aquifer-protective mining in shallow coal seams into seven types by comparing the result of the height of water-conducting fractured zones of long-wall and short-wall working faces with the thickness of the bedrock, the thickness of the weathered zone and the size of safety coal–rock pillars. As a result, we propose the preliminary classification system of aquifer-protective mining in shallow coal seams. It can provide a theoretical guidance for safe applications of aquifer-protective mining technology in shallow coal seams under similar conditions.

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浅埋煤层保含水层开采分级系统的适用条件
在国内外研究结论的基础上,分析了神东矿浅埋煤层工作面覆岩垮落特征及保含水层开采机理。选取上覆地层导水裂隙带高度作为综合指标,采用多因素综合指标分类方法,建立了浅埋煤层保含水层开采的适用条件。通过对方差的计算和分析,采用上覆岩层强度、开采扰动因素和岩石完整性等因素作为综合指数的相关因素。通过对长壁工作面和短壁工作面导水裂隙带高度与基岩厚度、风化带厚度和安全煤岩柱尺寸的比较,将浅埋煤层保含水层开采的适用条件划分为7种类型。在此基础上,提出了浅埋煤层保含水层开采的初步分类体系。可为类似条件下浅埋煤层保含水层开采技术的安全应用提供理论指导。
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