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Impact of mesh quality on the numerical estimation of saturated water conductivity of pore media

机译:网格质量对孔隙介质饱和导电性数值估计的影响

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The numerical modelling of transport phenomena in porous media often requires a compromise between grid precision and the accuracy of simulation results. This study demonstrates the impact of errors on the accuracy of the reproduction of the actual pore space by the numerical grid on the estimated values of the saturated water conductivity. Four types of computational grids with varying levels of complexity were prepared for each of the 12 tomographic images of the porous specimens. The specific surfaces and total porosities were calculated for each of the meshes and compared with those parameters calculated for binarized tomographic images. Simulations of steady flow were performed on the computational grids, and the saturated water conductivity values were calculated. It has been shown that an insufficiently accurate mesh only reproduces the largest pore spaces in the analysed sample, which most often leads to an underestimation of the water conductivity coefficient. The following criterion for the optimal accuracy of the computational grid is proposed, it is based on the voxel size of the tomographic images of the porous media: the minimum size of the cell in the mesh used for simulations has to be at most two times the size of the voxel used in the tomographic scans of the porous medium.
机译:多孔介质中运输现象的数值建模通常需要在网格精度与模拟结果的准确性之间折衷。本研究表明了误差对实际孔隙空间的再现精度的影响,在饱和导电性的估计值上的数值网格上的实际孔隙空间的再现。为多孔样本的12个断层图像中的每一个制备具有不同复杂程度的四种类型的计算网格。针对每个网格计算特定表面和总孔隙率,并与计算的二值化断层图像计算的参数进行比较。对计算网格进行稳定流动的模拟,并计算饱和的水电导值。已经表明,不充分的啮合仅在分析的样品中再现最大的孔隙空间,这通常导致低估了导电系数。提出了以下用于计算网格的最佳精度的标准,基于多孔介质的断层图像的体素大小:用于仿真的网格中的单元的最小尺寸必须是最多两倍用于多孔介质的断层扫描中使用的体素的大小。

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