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首页> 外文期刊>Acta Geotechnica: An International journal for Geoengineering >Simulations of hydro-fracking in rock mass at meso-scale using fully coupled DEM/CFD approach
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Simulations of hydro-fracking in rock mass at meso-scale using fully coupled DEM/CFD approach

机译:利用完全耦合DEM / CFD方法模拟岩体岩体中的水力压力

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摘要

The paper deals with two-dimensional (2D) numerical modelling of hydro-fracking (hydraulic fracturing) in rocks at the meso-scale. A numerical model was developed to characterize the properties of fluid-driven fractures in rocks by combining the discrete element method (DEM) with computational fluid dynamics (CFD). The mechanical behaviour of the rock matrix was simulated with DEM and the behaviour of the fracturing fluid flow in newly developed and pre-existing fractures with CFD. The changes in the void geometry in the rock matrix were taken into account. The initial 2D hydro-fracking simulation tests were carried out for a rock segment under biaxial compression with one injection slot in order to validate the numerical model. The qualitative effect of several parameters on the propagation of a hydraulic fracture was studied: initial porosity of the rock matrix, dynamic viscosity of the fracking fluid, rock strength and pre-existing fracture. The characteristic features of a fractured rock mass due to a high-pressure injection of fluid were realistically modelled by the proposed coupled approach.
机译:本文涉及中间规模岩石中水力压力(水力压裂)的二维(2D)数值模型。通过将离散元件方法(DEM)与计算流体动力学(CFD)组合来表征岩石中流体驱动骨折的性质的数值模型。用DEM模拟岩石基质的力学行为以及新开发和预先存在的CFD预先存在的压裂流体流动的行为。考虑了岩石矩阵中的空隙几何形状的变化。初始的2D水压压力仿真试验在双轴压缩下进行岩石段,其中一个注射插槽以验证数值模型。研究了若干参数对液压骨折传播的定性效果:岩体矩阵的初始孔隙率,皱纹液的动态粘度,岩石强度和预先存在的骨折。由于高压注入流体引起的裂缝岩体的特征是通过所提出的耦合方法建模的。

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