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渗流簇中的流动:核磁共振速度映射与数值模拟研究。

Flow through percolation clusters: NMR velocity mapping and numerical simulation study.

作者信息

Klemm A, Kimmich R, Weber M

机构信息

Sektion Kernresonanzspektroskopie, Universität Ulm, 89069 Ulm, Germany.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2001 Apr;63(4 Pt 1):041514. doi: 10.1103/PhysRevE.63.041514. Epub 2001 Mar 29.

Abstract

Three- and (quasi-)two-dimensional percolation objects have been fabricated based on Monte Carlo generated templates. The object size was up to 12 cm (300 lattice sites) in each dimension. Random site, semicontinuous swiss-cheese, and semicontinuous inverse swiss-cheese percolation models above the percolation threshold were considered. The water-filled pore space was investigated by nuclear magnetic resonance (NMR) imaging and, after exerting a pressure gradient, by NMR velocity mapping. The spatial resolutions of the fabrication process and the NMR experiments were 400 microm and better than 300 microm, respectively. The experimental velocity resolution was 60 microm/s. The fractal dimension, the correlation length, and the percolation probability can be evaluated both from the computer generated templates and the corresponding NMR spin density maps. Based on velocity maps, the percolation backbones were determined. The fractal dimension of the backbones turned out to be smaller than that of the complete cluster. As a further relation of interest, the volume-averaged velocity was calculated as a function of the probe volume radius. In a certain scaling window, the resulting dependence can be represented by a power law, the exponent of which was not yet considered in the theoretical literature. The experimental results favorably compare to computer simulations based on the finite-element method (FEM) or the finite-volume method (FVM). This demonstrates that NMR microimaging as well as FEM/FVM simulations reliably reflect transport features in percolation clusters.

摘要

基于蒙特卡罗生成的模板制备了三维和(准)二维渗流物体。每个维度上物体尺寸可达12厘米(300个晶格点)。考虑了高于渗流阈值的随机位点、半连续瑞士奶酪和半连续反瑞士奶酪渗流模型。通过核磁共振(NMR)成像研究充水孔隙空间,并在施加压力梯度后,通过NMR速度映射进行研究。制备过程和NMR实验的空间分辨率分别为400微米和优于300微米。实验速度分辨率为60微米/秒。分形维数、相关长度和渗流概率可以从计算机生成的模板和相应的NMR自旋密度图中进行评估。基于速度图,确定了渗流骨架。结果表明,骨架的分形维数小于完整簇的分形维数。作为另一个感兴趣的关系,计算了体积平均速度作为探针体积半径的函数。在某个标度窗口中,所得依赖关系可以用幂律表示,理论文献中尚未考虑其指数。实验结果与基于有限元法(FEM)或有限体积法(FVM)的计算机模拟结果进行了良好的比较。这表明NMR显微成像以及FEM/FVM模拟可靠地反映了渗流簇中的传输特征。

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