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Darcian natural convection in an inclined trapezoidal cavity partly filled with a porous layer and partly with a nanofluid layer

机译:倾斜梯形腔中的达西自然对流,部分填充有多孔层,部分填充有纳米流体层

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摘要

The problem of Darcian natural convection in a trapezoidal cavity partly filled with porous layer and partly with nanofluid layer is studied numerically using finite difference method. The left slopping wall is maintained at a constant hot temperature and the right slopping wall is maintained at a constant cold temperature, while the horizontal walls are adiabatic. Water-based nanofluids with Ag or Cu or TiO2 nanoparticles are chosen for the investigation. The governing parameters of this study are the Rayleigh number (104 ≤ Ra ≤ 107), Darcy number (10–5 ≤ Da ≤ 10–3), nanoparticle volume fraction (0 ≤ φ ≤ 0.2), porous layer thickness (0.3 ≤ S ≤ 0,7), the side wall inclination angle (0° ≤ ϕ ≤ 21.8°) and the inclination angle of the cavity (0° ≤ ϖ ≤ 90°). Explanation for the influence of various above-mentioned parameters on streamlines, isotherms and overall heat transfer is provided on the basis of thermal conductivities of nanoparticles, water and porous medium. It is shown that convection increases remarkably by the addition of silver-water nanofluid and the heat transfer rate is affected by the inclination angle of the cavity variation. The results have possible applications in heat-removal and heat-storage fluid-saturated porous systems.
机译:利用有限差分法数值研究了梯形腔中部分填充有多孔层,部分填充有纳米流体层的达尔西自然对流问题。左倾斜壁保持在恒定的高温,右倾斜壁保持在恒定的低温,而水平壁是绝热的。选择具有Ag或Cu或TiO2纳米粒子的水基纳米流体进行研究。这项研究的主要控制参数是瑞利数(104≤Ra≤107),达西数(10-5≤Da≤10-3),纳米颗粒体积分数(0≤φ≤0.2),多孔层厚度(0.3≤S ≤0,7),侧壁倾斜角(0°≤≤≤21.8°)和腔体的倾斜角(0°≤≤≤90°)。基于纳米粒子,水和多孔介质的导热率,提供了上述各种参数对流线,等温线和整体传热的影响的解释。结果表明,通过添加银水纳米流体,对流显着增加,并且传热速率受腔变化的倾斜角度影响。该结果在排热和储热流体饱和的多孔系统中可能具有应用。

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