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Efficiency of a two-step upscaling method for permeability evaluation at Darcy and pore scales

机译:两步放大方法在达西和孔隙尺度上进行渗透率评估的效率

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摘要

This work presents a new subdivision method to upscale absolute permeability fields. This process, called two-step method, consists in (i) solving micro-scale equations on subdomains obtained from the full domain regular decomposition and (ii) solve a second upscaling with Darcy's law on the permeability fields obtained in the first step. The micro-scale equations used depend on the case studied. The two-step upscaling process is validated on randomly generated Darcy-scale permeability fields by measuring the numerical error induced by upscaling. The method is then applied to real domains obtained from sandstone micro-tomographic images. The method specificities due to pore-space structure are discussed. The main advantage of the two-step upscaling method resides in the drastic reduction of computational costs (CPU time and memory usage) while maintaining a numerical error similar to that of other upscaling procedures. This new upscaling method may improve permeability predictions by the use of finer meshes or larger sample volumes.
机译:这项工作提出了一种新的细分方法来扩大绝对渗透率场。这个过程称为两步法,包括(i)求解从全域正则分解获得的子域上的微尺度方程式,以及(ii)利用第一步中获得的渗透率场的达西定律求解第二次放大。使用的微尺度方程式取决于所研究的情况。通过测量由放大引起的数值误差,在随机生成的达西尺度渗透率场上验证了两步放大过程。然后将该方法应用于从砂岩显微断层图像获得的真实区域。讨论了由于孔隙空间结构导致的方法特异性。两步升级方法的主要优点在于可以大大减少计算成本(CPU时间和内存使用),同时保持类似于其他升级程序的数值误差。这种新的放大方法可以通过使用更细的网格或更大的样本量来改善渗透率预测。

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