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Modeling of unsteady and steady fluid flow, heat transfer and dispersion in porous media using unit cell scale

机译:使用单元格尺度对多孔介质中不稳定和稳定的流体流动,传热和扩散进行建模

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摘要

A unit cell scale computation of laminar steady and unsteady fluid flow and heat transfer is presented for a spatially periodic array of square rods representing two-dimensional isotropic or anisotropic porous media. In the model, a unit cell is taken as a representative elementary control volume and uniform heat flux boundary conditions are imposed on the solid-fluid interface. The governing equations are discret-ized by means of the finite volume approach; boundaries between adjacent cells are taken to be spatially periodic. Computations obtained using the SIMPLER algorithm, are made by varying the macroscopic flow direction from 0° to 90° relative to the unit cell, and varying the Reynolds number over the range 1-10~3 spanning the Darcian and the inertial flow regimes to construct a database of local flow and heat transfer resistances in terms of permeabilities, inertial coefficients, Nusselt numbers, and thermal dispersion coefficients. The resulting database is utilized in a system scale analysis of a serpentine heat exchanger, where these directional terms from the microscale analysis provide closure to the porous-continuum model.
机译:针对代表二维各向同性或各向异性多孔介质的方棒的空间周期性阵列,提出了层流稳态和非稳态流体流动和传热的单位单元尺度计算。在模型中,以晶胞为代表的基本控制体积,并在固-液界面上施加均匀的热通量边界条件。控制方程通过有限体积法离散化。相邻单元之间的边界被认为是空间周期性的。使用SIMPLER算法获得的计算结果是,通过将相对于单位晶胞的宏观流动方向从0°更改为90°,并在跨越Darcian和惯性流态的1-10〜3范围内改变雷诺数来进行构造在渗透率,惯性系数,努塞尔数和热扩散系数方面的局部流动和传热阻力数据库。生成的数据库用于蛇形热交换器的系统规模分析,其中来自微观分析的这些方向项为多孔连续模型提供了封闭性。

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