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Discrete Element Numerical Simulation Method for Permeability Stress Sensitivity of Persistent Fractured Coal Samples

机译:持久性裂缝煤样品渗透应激敏感性的离散元数值模拟方法

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摘要

The stress sensitivity of the persistent fracture and primary joint directly affect the stress and permeability of elastic and shear fracture coal samples in fluid-solid coupling simulation. Therefore, the method to select the parameters of the primary joints and persistent fracture affects the accuracy and reliability of the numerical simulation. This paper introduces the discrete element flow coupling simulation program based on the cubic law. The research on the relationship between flow rates and model parameters, including the mesh number, practice length, aperture, model size, and pressure difference, were performed. The fitting formulas of the flow rates and model parameters were obtained by numerical simulation. Based on the experimental study on the stress permeability of the elastic coal sample and the persistent fracture coal sample, the fluid-solid coupling simulation parameters selection method of the initial joint and persistent fracture is presented. The numerical simulation results with the calculation parameters under triaxial equi-compressive and deviatoric loads are in good agreement with the experimental results, indicating that the method herein can well simulate the relationship between the stress and permeability of the coal samples.
机译:持续骨折和初级接头的应力敏感性直接影响弹性和剪切断裂煤样的应力和渗透性在流体 - 固体耦合模拟中。因此,选择主要关节和持续骨折的参数的方法影响数值模拟的精度和可靠性。本文介绍了基于立方法的离散元流耦合仿真程序。进行了对流速与模型参数的关系的研究,包括网号,练习长度,光圈,模型大小和压力差。通过数值模拟获得流速和模型参数的拟合公式。基于对弹性煤样品的应力渗透性和持续断裂煤样品的实验研究,提出了初始关节和持续骨折的流体固耦合仿真参数选择方法。用三轴平等压缩和脱离载荷下的计算参数的数值模拟结果与实验结果吻合良好,表明本文的方法可以很好地模拟煤样的应力和渗透性之间的关系。

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