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首页> 外文期刊>Advances in Water Resources >Network Flow Modeling Via Lattice-boltzmann Based Channel Conductance
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Network Flow Modeling Via Lattice-boltzmann Based Channel Conductance

机译:通过基于Lattice-boltzmann的通道电导进行网络流建模

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摘要

Lattice-Boltzmann (LB) computations of single phase, pore-to-pore conductance are compared to models in which such conductances are computed via standard pore body-channel-pore body series resistance (SR), with the conductance of each individual element (pore body, channel) based on geometric shape factor measurements. The LB computations, based upon actual channel geometry derived from X-ray computed tomographic imagery, reveal that the variation in conductance for channels having similar shape factor is much larger than is adequately captured by the geometric models. Fits to the dependence of median value of conductance versus shape factor from the LB-based computations show a power law dependence of higher power than that predicted by the geometric models. We introduce two network flow models based upon the LB conductance computations: one model is based upon LB computations for each pore-to-pore connection; the second is based upon a power law fit to the relationship between computed conductance and throat shape factor. Bulk absolute permeabilities for Fontainebleau sandstone images are computed using the SR-based network models and the two LB-based models. Both LB-based network models produce bulk absolute permeability values that fit published data more accurately than the SR-based models.
机译:将单相孔-孔电导的Lattice-Boltzmann(LB)计算与通过标准孔体-通道-孔体串联电阻(SR)计算此类电导的模型进行比较,其中每个单独元素的电导(孔体,通道)基于几何形状因子测量。 LB计算基于从X射线计算机断层扫描图像得出的实际通道几何结构,显示出具有相似形状因子的通道的电导率变化要比几何模型所捕获的要大得多。从基于LB的计算中得出的电导中值对形状因数的依赖关系拟合结果显示,幂定律对功率的依赖性比几何模型预测的功率高。我们基于LB电导率计算引入两种网络流动模型:一种模型是基于LB计算的每个孔-孔连接;另一种模型是基于LB计算的。第二个是基于幂定律,该幂定律适合于计算的电导和喉咙形状因数之间的关系。使用基于SR的网络模型和两个基于LB的模型来计算枫丹白露砂岩图像的体积绝对渗透率。与基于SR的模型相比,这两种基于LB的网络模型均产生的体积绝对渗透率值更准确地拟合了已发布的数据。

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