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Effects of trap and reflect particle boundary conditions on particle transport and convective heat transfer for duct flow - A two-way coupling of Eulerian-Lagrangian model

机译:俘获和反射颗粒边界条件对管道流中颗粒传输和对流传热的影响-欧拉-拉格朗日模型的双向耦合

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An Eulerian-Lagrangian model for analyzing the flow of nanofluids in duct was developed and the effects of trap and reflect wall boundary conditions for nanoparticles were studied. The two-way coupled model was used and the discrete nature of particles was accounted for the analysis. The model was then used to simulate the laminar flow of Al2O3-water nanofluids between two parallel plates at constant temperatures. The effects of temperature differences between the fluid and the walls including the thermophoresis force were included in the model. The influence of the particle boundary conditions and solid volume fractions on concentration, nanofluid velocity profile and heat transfer rate were investigated. For a fixed values of Reynolds number (Re = 100) and particle diameter (dp = 30 nm), series of simulations were performed for a range of solid volume fraction 0 <= phi <= 0.05 for both trap and reflect boundary conditions for nanoparticle-wall interactions. It was found that for a reflecting wall, the concentration near the wall increased slightly that could cause a slight diffusion away from the wall. For the trapping wall, there was a sharp concentration gradient near the wall and the particles diffused toward the wall. Also, there was a small increase in the average Nusselt number for the reflecting wall in comparison to the absorbing wall. (C) 2016 Elsevier Ltd. All rights reserved.
机译:建立了用于分析管道中纳米流体流动的欧拉-拉格朗日模型,并研究了捕获和反射壁边界条件对纳米颗粒的影响。使用双向耦合模型,并分析了颗粒的离散性质。然后将模型用于模拟恒定温度下两个平行板之间的Al2O3-水纳米流体的层流。模型中包括了流体和壁之间的温度差(包括热泳力)的影响。研究了颗粒边界条件和固体体积分数对浓度,纳米流体速度分布和传热速率的影响。对于雷诺数(Re = 100)和粒径(dp = 30 nm)的固定值,对一系列固形物体积分数0 <= phi <= 0.05进行了一系列模拟,以捕获和反映纳米粒子的边界条件墙互动。已经发现,对于反射壁,壁附近的浓度略有增加,这可能引起从壁的轻微扩散。对于捕集壁,壁附近有一个陡峭的浓度梯度,颗粒向壁扩散。而且,与吸收壁相比,反射壁的平均努塞尔数略有增加。 (C)2016 Elsevier Ltd.保留所有权利。

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