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Dimp-Hydro Solver for Direct Numerical Simulation of Fluid Microflows within Pore Space of Core Samples

机译:核心样品孔隙空间内流体微流体的直接数值模拟DIMP-Hydro求解器

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The paper is devoted to a description of the DiMP-Hydro software package being developed at the Keldysh Institute of Applied Mathematics (Russian Academy of Sciences). It is intended to simulate microflows of single- and two-phase viscous compressible fluids with different rheology in spatial voxel domains. Such geometric models are relevant due to the development and widespread use of computer microtomography methods. One of the main areas of the application of this software package is the simulation of microflows within pore spaces of core (rock) samples. The simulation results can be used to determine the macroscopic properties of core samples (for instance, absolute permeability) and features of displacement processes at the micro level, which is one of main tasks of digital rock technology. The used mathematical models, numerical algorithms, and the software package are described. To describe the fluid dynamics, the regularized Navier–Stokes (for single-phase flows) and Navier–Stokes–Cahn–Hillard equations (for two-phase flows) are used. The regularization is based on the quasi-hydrodynamic approach, which is physically justified and makes it possible to use explicit stable numerical algorithms that are relatively simple to implement. The software package is parallel and focused on the use of high-performance computing systems. The results of the use of DiMP-Hydro to simulate microflows of fluid (including two-phase fluid) and gas (including moderately rarefied gas) in the pore space of core samples are presented.
机译:本文致力于在Keldysh应用数学研究所(俄罗斯科学院)开发的DIMP-Hydro软件包的描述。它旨在模拟单相粘性可压缩液的微流量,在空间体素结构域中具有不同流变。这种几何模型由于计算机显微图方法的开发和广泛使用而是相关的。该软件包应用的主要领域之一是核心(岩石)样品的孔隙空间内微流量的模拟。仿真结果可用于确定微观水平的核心样本(例如,绝对渗透率)的宏观性质,是数字岩技术的主要任务之一。描述了使用的数学模型,数值算法和软件包。为了描述流体动力学,使用正则化的Navier-Stokes(用于单相流量)和Navier-Stokes-Cahn-Hillard方程(用于两相流量)。正则化是基于准氢方法,其物理上是合理的,并且可以使用相对简单的实际稳定的数值算法来实现。软件包是并行的,并专注于使用高性能计算系统。提出了使用DIMP-HYDRO模拟核心样品的孔隙空间中流体(包括两相流体)和气体(包括中等稀土气体)的微流量的结果。

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