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Validating numerical solution of transient Darcy flow using the stabilized mixed finite element method

机译:用稳定混合有限元方法验证瞬态达西流的数值解

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The natural flows through porous media often exhibit transient behavior. Some of the examples include water movement in aquifers, oil flow in reservoirs and blood passing through arteries walls. For accurate modeling of such flows, the Darcy model is used with an additional time-dependent pressure term. In this paper, validation of the three-dimensional numerical solution of transient Darcy flow using the stabilized mixed finite element method is presented. The proposed numerical solution employs the implicit backward difference method for the discretization of time, whereas, for space discretization, the Galerkin technique is used. The model is validated against analytical models including the Theis equation for pressure drawdown near a pumping well. The proposed solution is tested for different values of the viscosity of the fluid, and the permeability and specific storage of the medium. The error analysis shows that the stabilized mixed Galerkin methods give stable solutions with no oscillations and spurious results. It is also found that the viscosity of the fluid and the permeability of the medium have prominent effects on the transient behavior of Darcy flow.
机译:通过多孔介质的自然流动通常表现出瞬时行为。一些示例包括含水层中的水运动,储层中的油流和通过动脉壁的血液。为了对此类流量进行精确建模,将Darcy模型与其他随时间变化的压力项一起使用。本文提出了使用稳定的混合有限元方法对瞬时达西流的三维数值解进行验证的方法。所提出的数值解采用隐式后向差分方法进行时间离散化,而对于空间离散化则使用Galerkin技术。该模型已针对包括抽油井附近压力下降的泰斯方程在内的分析模型进行了验证。测试了所提出的解决方案的流体粘度,介质的渗透性和比存储的不同值。误差分析表明,稳定的混合Galerkin方法提供了稳定的解,没有振荡和伪结果。还发现,流体的粘度和介质的渗透性对达西流的瞬态行为具有显着影响。

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