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Groundwater outbursts from faults above a confined aquifer in the coal mining

机译:煤矿开采中承压含水层上方断层引起的地下水突出

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摘要

Groundwater outburst has an impartible relationship with geological structures such as water-conducting faults, which are widely distributed in north China. In order to study the seepage property and mechanism of water outburst from the faults above a confined aquifer in the coal mining, the simulation model of ground water inrush for fault was designed. The water outburst parameters, such as water inflow, permeability, seepage velocity, porosity and other variables under different material combination and water pressures, were obtained; the research results indicate as follows: (1) The changes of the water inflow can be divided into three stages, i.e., the water inflow slowly increases at the early stage, rapidly increases at the middle stage and keeps unchanged at the late stage. (2) The seepage process can be represented by the seepage combination types, which are composed of pore flow, fissure flow and pipe flow, and the seepage changes not only with time but also with different conditions. (3) Mining would lead to the reactivation of faults and further enhance the permeability of fault zone potentially. The tiny granules in fault would be eroded and moved to exterior as the time under the high water pressure and lead to the change of porosity parameters. In this case, the seepage velocity would increase ceaselessly, and then the seepage would convert into pipe flow and finally lead to water inrush accidents.
机译:地下水的爆发与华北地区广泛分布的导水断层等地质构造有着密切的联系。为了研究煤矿开采承压层上方断层的渗流特性及突水机理,设计了断层地下水突涌的模拟模型。得到了不同材料组合和水压条件下的突水参数,如入水量,渗透率,渗流速度,孔隙率等变量。研究结果表明:(1)入水量变化可分为三个阶段,即入水量在初期缓慢增加,在中期迅速增加,在后期保持不变。 (2)渗流过程可以用渗流组合类型来表示,渗流组合类型由孔隙流,裂隙流和管流组成,渗流不仅随时间变化,而且随条件的变化而变化。 (3)开采将导致断层复活,并有可能进一步提高断层带的渗透性。在高水压下,随着时间的流逝,断层中的细小颗粒将被侵蚀并移至外部,并导致孔隙度参数发生变化。在这种情况下,渗流速度将不断增加,然后渗流将转化为管道流量,最终导致突水事故。

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