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Influence of particle size on non-Darcy seepage of water and sediment in fractured rock

机译:粒径对裂缝性岩石非水渗流的影响

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摘要

Surface water, groundwater and sand can flow into mine goaf through the fractured rock, which often leads to water inrush and quicksand movement. It is important to study the mechanical properties of water and sand in excavations sites under different conditions and the influencing factors of the water and sand seepage system. The viscosity of water–sand mixtures under different particle sizes, different concentration was tested based on the relationship between the shear strain rate and the surface viscosity. Using the self-designed seepage circuit, we tested permeability of water and sand in fractured rock. The results showed that (1) effective fluidity is in 10−8–10−5 mn+2 s2−n/kg, while the non-Darcy coefficient ranges from 105 to 108 m−1 with the change of particle size of sand; (2) effective fluidity decreases as the particle size of sand increased; (3) the non-Darcy coefficient ranges from 105 to 108 m−1 depending on particle size and showed contrary results. Moreover, the relationship between effective fluidity and the particle size of sand is fitted by the exponential function. The relationship between the non-Darcy coefficient and the particle size of sand is also fitted by the exponential function.
机译:地表水,地下水和沙子可能会通过破裂的岩石流入采空区,这通常会导致涌水和流沙运动。研究不同条件下的开挖场地水沙力学特性及其对水沙渗流系统的影响因素具有重要意义。根据剪切应变速率与表面粘度之间的关系,对不同粒径,不同浓度的水沙混合物的粘度进行了测试。使用自行设计的渗流回路,我们测试了裂隙岩石中水和沙的渗透性。结果表明(1)有效流动性在10 −8 –10 −5 m n + 2 s 2-n / kg,随着颗粒大小的变化,非达西系数从10 5 到10 8 m -1 沙子(2)有效流动性随砂粒粒径的增加而降低; (3)非达西系数介于10 5 到10 8 m -1 之间,具体取决于颗粒大小,并显示相反的结果。而且,有效流动性和砂粒尺寸之间的关系由指数函数拟合。非达西系数和砂粒尺寸之间的关系也由指数函数拟合。

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