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Water-conserving mining influencing factors identification and weight determination in northwest China

机译:西北地区节水型采矿影响因素识别与权重确定

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Water-conserving mining is an effective way to alleviate the contradiction between fragile ecological environment and high-intensity coal mining in the arid and semi-arid region of northwest China. It needs to consider the engineering and geological conditions, hydrogeological conditions and mining methods of coal seams. From the three aspects, this paper systematically analyzes the influencing factors and establishes an identification model with multi-level structures. The model includes three primary factors (including the engineering and geological conditions, hydrogeological conditions and mining methods), nine secondary factors (including overlying strata thickness, aquiclude, mining parameters and etc.), sixteen third-tier factors (including the faults, aquiclude thickness and effective mining height and etc.) and twelve fourth-tier factors (including the fault throw exponent, aquiclude permeability and coal pillar sizes and etc.). On the basis, the analytic hierarchy process is used to build the judgment matrix and obtain the weight of each influencing factor. The results indicate that the overlying strata thickness, aquiclude and effective mining height are the most important factors among the primary factors of engineering and geological conditions, hydrogeological conditions and mining methods, respectively. The research results could provide theoretical references for the water-conserving mining of coal resources in northwest China.
机译:节水采矿是缓解西北干旱半干旱地区脆弱生态环境与高强度煤矿开采矛盾的有效途径。需要考虑煤层的工程地质条件,水文地质条件和开采方法。从这三个方面,系统地分析了影响因素,建立了多层次结构的识别模型。该模型包括三个主要因素(包括工程和地质条件,水文地质条件和采矿方法),九个次要因素(包括上覆地层厚度,含水层,采矿参数等),十六个第三层因素(包括断层,含水层)。厚度和有效采矿高度等)和十二个第四层因素(包括断层指数,含水层渗透性和煤柱尺寸等)。在此基础上,采用层次分析法建立判断矩阵,得到各影响因子的权重。结果表明,在工程地质条件,水文地质条件和开采方法的主要因素中,上覆地层厚度,含水层和有效开采高度分别是最重要的因素。研究结果可为西北地区节水型煤炭资源开采提供理论参考。

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