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Characterization of water bursting and discharge into underground mines with multilayered groundwater flow systems in the North China coal basin

机译:华北煤田地下水多层渗流系统地下矿井突水和排水的特征。

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摘要

A conceptual framework for characterization of water bursting and discharge into underground mines with multilayered groundwater flow systems is presented, based on the features of the site conditions and analyses of the water bursting and mine inundation events of the North China coal basin. Comprehensive analyses of the hydrogeological conditions for establishment of the three-dimensional groundwater flow systems of the North China coal basin revealed different vertical hydraulic connection paths or channels. These connections include karst collapse columns, fault or fracture zones, buried weathering zones, and fracture networks in aquitards, within the multilayered groundwater flow systems. Also examined, was the effect of the primary features of the flow system and those different connection paths on water bursting and discharge into the underground coal mines. It was demonstrated that appropriately identifying and adequately understanding the three-dimensional multilayered groundwater flow systems and those various vertical hydraulic connection mechanisms are critical for appropriately preventing water bursting hazards and predicting water discharge into underground mines. A valuable guideline is presented on characterization of water bursting and discharge into underground mines with multilayered groundwater flow systems.
机译:基于现场条件特征,对华北煤盆地的突水和淹没事件进行了分析,提出了利用地下水流系统对地下矿井突水和排水进行表征的概念框架。对华北煤盆地三维地下水流系统建立的水文地质条件的综合分析显示出不同的垂直水力连接路径或通道。这些连接包括多层地下水流系统内的岩溶塌陷柱,断层或破裂带,埋藏的风化带和阿奎塔德的裂缝网络。还检查了流动系统的主要特征以及那些不同的连接路径对突入地下煤矿井排水的影响。结果表明,正确识别和充分理解三维三维地下水流系统以及各种垂直水力连接机制对于恰当地防止突水危险和预测向地下矿井的水排放至关重要。提出了关于使用多层地下水流系统对地下矿井突水和排水进行表征的有价值的指南。

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