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首页> 外文期刊>Advances in civil engineering >A Mechanical Model of the Overlying Rock Masses in Undersea Coal Mining and a Stress-Seepage Coupling Numerical Simulation
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A Mechanical Model of the Overlying Rock Masses in Undersea Coal Mining and a Stress-Seepage Coupling Numerical Simulation

机译:海底煤矿上覆岩体力学模型及应力渗流耦合数值模拟

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The water inrush of a working face is the main hidden danger to the safe mining of underwater coal seams. It is known that the development of water-flowing fractured zones in overlying strata is the basic path which causes water inrushes in working faces. In the engineering background of the underwater mining in the Longkou Mining Area, the analysis model and judgment method of crack propagation were created on the basis of the Mohr–Coulomb criterion. Fish language was used to couple the extension model into the FLAC3d software, in order to simulate the mining process of the underwater coal seam, as well as to analyze the initiation evolutionary characteristics and seepage laws of the fractured zones in the overlying strata during the advancing processes of the working face. The results showed that, during the coal seam mining process, the mining fractured zones which had been caused by the compression-shear and tension-shear were mainly concentrated in the overlying strata of the working face. Also, the open-off cut and mining working face were the key sections of the water inrush in the rock mass. The condition of the water disaster was the formation of a water inrush channel. The possible water inrush channels in underwater coal mining are mainly composed of water-flowing fractured zones which are formed during the excavation processes. The numerical simulation results were validated through the practical engineering of field observations on the height of water-flowing fractured zone, which displayed a favorable adaptability.
机译:工作面突水是安全开采水下煤层的主要隐患。众所周知,上覆地层中流水裂隙带的发育是导致工作面涌水的基本路径。在龙口矿区水下开采的工程背景下,基于Mohr-Coulomb准则建立了裂纹扩展的分析模型和判断方法。使用鱼语言将扩展模型耦合到FLAC3d软件中,以模拟水下煤层的开采过程,并分析推进过程中上覆地层裂缝带的初始演化特征和渗流规律。工作面的过程。结果表明,在煤层开采过程中,由压剪,拉剪引起的采动裂缝带主要集中在工作面上覆地层。同样,露天切工和采矿工作面是岩体中突水的关键部分。水灾的条件是形成了突水通道。水下煤矿开采中可能发生的突水通道主要由在开挖过程中形成的导水裂隙带组成。通过对流水裂隙带高度的现场观测的实际工程验证了数值模拟结果,显示了良好的适应性。

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