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使用针对同步加速器用户的集成现场成像工作流程估算多孔介质中的统计有效扩散率

Statistical Effective Diffusivity Estimation in Porous Media Using an Integrated On-site Imaging Workflow for Synchrotron Users.

作者信息

Le Houx James, Ruiz Siul, McKay Fletcher Daniel, Ahmed Sharif, Roose Tiina

机构信息

Department, Diamond Light Source, Harwell Science and Innovation Campus, Fermi Ave, Didcot, Oxfordshire OX11 0DE UK.

Faculty of Engineering and Physical Sciences, University of Southampton, University Road, Southampton, Hampshire SO17 1BJ UK.

出版信息

Transp Porous Media. 2023;150(1):71-88. doi: 10.1007/s11242-023-01993-7. Epub 2023 Jul 26.

Abstract

UNLABELLED

Transport in porous media plays an essential role for many physical, engineering, biological and environmental processes. Novel synchrotron imaging techniques and image-based models have enabled more robust quantification of geometric structures that influence transport through the pore space. However, image-based modelling is computationally expensive, and end users often require, while conducting imaging campaign, fast and agile bulk-scale effective parameter estimates that account for the pore-scale details. In this manuscript we enhance a pre-existing image-based model solver known as OpenImpala to estimate bulk-scale effective transport parameters. In particular, the boundary conditions and equations in OpenImpala were modified in order to estimate the effective diffusivity in an imaged system/geometry via a formal multi-scale homogenisation expansion. Estimates of effective pore space diffusivity were generated for a range of elementary volume sizes to estimate when the effective diffusivity values begin to converge to a single value. Results from OpenImpala were validated against a commercial finite element method package COMSOL Multiphysics (abbreviated as COMSOL). Results showed that the effective diffusivity values determined with OpenImpala were similar to those estimated by COMSOL. Tests on larger domains comparing a full image-based model to a homogenised (geometrically uniform) domain that used the effective diffusivity parameters showed differences below 2 % error, thus verifying the accuracy of the effective diffusivity estimates. Finally, we compared OpenImpala's parallel computing speeds to COMSOL. OpenImpala consistently ran simulations within fractions of minutes, which was two orders of magnitude faster than COMSOL providing identical supercomputing specifications. In conclusion, we demonstrated OpenImpala's utility as part of an on-site tomography processing pipeline allowing for fast and agile assessment of porous media processes and to guide imaging campaigns while they are happening at synchrotron beamlines.

SUPPLEMENTARY INFORMATION

The online version contains supplementary material available at 10.1007/s11242-023-01993-7.

摘要

未标注

多孔介质中的输运对于许多物理、工程、生物和环境过程都起着至关重要的作用。新型同步加速器成像技术和基于图像的模型使得对影响孔隙空间输运的几何结构进行更可靠的量化成为可能。然而,基于图像的建模计算成本高昂,终端用户在进行成像活动时通常需要快速且灵活的宏观尺度有效参数估计,同时考虑孔隙尺度的细节。在本手稿中,我们改进了一个现有的基于图像的模型求解器OpenImpala,以估计宏观尺度的有效输运参数。具体而言,对OpenImpala中的边界条件和方程进行了修改,以便通过形式上的多尺度均匀化展开来估计成像系统/几何结构中的有效扩散系数。针对一系列基本体积尺寸生成了有效孔隙空间扩散系数的估计值,以估计有效扩散系数值何时开始收敛到单个值。将OpenImpala的结果与商业有限元方法软件包COMSOL Multiphysics(简称为COMSOL)进行了验证。结果表明,用OpenImpala确定的有效扩散系数值与COMSOL估计的值相似。在更大区域上进行的测试中,将完整的基于图像的模型与使用有效扩散系数参数的均匀化(几何上均匀)区域进行比较,误差低于2%,从而验证了有效扩散系数估计的准确性。最后,我们将OpenImpala的并行计算速度与COMSOL进行了比较。OpenImpala始终能在几分钟内完成模拟,比具有相同超级计算规格的COMSOL快两个数量级。总之,我们证明了OpenImpala作为现场层析成像处理管道一部分的实用性,它能够对多孔介质过程进行快速灵活的评估,并在同步加速器光束线进行成像活动时提供指导。

补充信息

在线版本包含可在10.1007/s11242-023-01993-7获取的补充材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6e01/10468943/7c6b3da53d85/11242_2023_1993_Fig1_HTML.jpg

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