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首页> 外文期刊>Mechanics of materials >Grid coarsening, simulation of transport processes in, and scale-up of heterogeneous media: Application of multiresolution wavelet transformations
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Grid coarsening, simulation of transport processes in, and scale-up of heterogeneous media: Application of multiresolution wavelet transformations

机译:网格粗化,传输过程的模拟以及异构介质的放大:多分辨率小波变换的应用

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摘要

We describe a recently-developed approach to the numerical simulation of transport processes in heterogeneous materials and fluid flow in porous media. The morphology of such materials and media is characterized by broadly-distributed and correlated local conductances or permeabilities, hence necessitating its representation by a highly-resolved computational grid that may contain millions of grid points or blocks. Simulation of flow and transport in such grids is very difficult and time consuming. The new approach is based on the use of wavelet transformations. It computes the wavelet scaling and detail coefficients of the conductance or permeability field in the highly-resolved grid. It then utilizes the coefficients to systematically coarsen the grid's low-conductance or permeability blocks while retaining its high resolution in the high-permeability or conductance zones, and those zones in which the quantities of interest, such as the temperature or pressure, experience large variations. The coarsening can be static, generating a fixed grid, but may also be dynamic such that the grid structure evolves with the time if, for example, the local conductances are a strong function of the temperature. The method is applied to study transient flow and transport in heterogeneous materials and porous media, and is shown to lead to accurate solution of the problem at greatly reduced (by at least two orders of magnitude) computational cost.
机译:我们描述了一种新近发展的方法,用于数值模拟非均质材料中的传输过程和多孔介质中的流体流动。此类材料和介质的形态特征是分布广泛且相关的局部电导或磁导率,因此需要使用高度解析的计算网格(可能包含数百万个网格点或块)来表示。在这样的网格中模拟流动和运输是非常困难和耗时的。新方法基于小波变换的使用。它计算高度分辨网格中电导或渗透率场的小波比例和详细系数。然后,它利用系数来系统地粗化网格的低电导率或渗透率块,同时在高磁导率或电导率区域以及感兴趣的量(例如温度或压力)经历较大变化的那些区域中保持其高分辨率。粗化可以是静态的,生成固定的网格,但也可以是动态的,例如,如果局部电导是温度的强函数,则网格结构会随时间变化。该方法用于研究非均质材料和多孔介质中的瞬态流动和运输,并已证明可以以大大降低(至少两个数量级)的计算成本来精确解决问题。

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