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Research on the Permeability Characteristics of Granite with Different Weathering Degrees before and after the Influence of Mining Method Construction

机译:采矿法施工影响下和不同风化程度的花岗岩渗透特性研究

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The influence of mining method tunnel construction on the groundwater environment is a very important and complex engineering environment problem, and the strong differential weathering of water-rich granite strata increases the difficulty of this problem. In this paper, the mineral composition and microstructure characteristics of granite with different weathering degrees before and after the influence of mining method were studied by in-situ and indoor seepage tests and theoretical calculation, and the impact of mining method tunneling on granite permeability was also analyzed. Calculation results revealed that the permeability coefficient of surrounding rock at 1.1 m away from excavation face increased 41.6 times as much as the original. The permeability coefficient of moderately and strongly weathered granite increased by 6.12 and 3.33 times, respectively and the permeability also increased. The variation of the permeability coefficient of fully weathered granite was the smallest, increasing by 1.67 times, which is due to mechanical excavation of a fully weathered layer on-site, and the disturbance was far less than that caused by blasting. The scale of the excavation damaged zone (EDZ) induced by mining method was determined by wave velocity test, which provides a basis for subsequent seepage field calculation and research.
机译:采矿方法隧道施工对地下水环境的影响是一个非常重要和复杂的工程环境问题,水丰富的花岗岩地层的强差动风化增加了这个问题的难度。在本文中,采用原位和室内渗漏试验研究和理论计算,研究了在采矿方法影响和挖掘方法前后具有不同风化度的花岗岩的矿物成分和微观结构特性,以及采矿方法隧道对花岗岩渗透性的影响分析。计算结果表明,围岩远离挖掘面为1.1米的渗透系数增加了41.6倍。中度和强烈风化花岗岩的渗透系数分别增加了6.12和3.33倍,渗透率也增加。完全被风化花岗岩的渗透系数的变化是最小的,增加1.67倍,这是由于现场全面风化层的机械挖掘,并且扰动远远低于喷砂引起的。通过波速试验确定通过采矿方法诱导的挖掘损伤区(EDZ)的规模,为后续渗流场计算和研究提供了基础。

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