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An analytical consideration of steady-state forced convection within a nanofluid-saturated metal foam

机译:纳米流体饱和金属泡沫内稳态强制对流的分析考虑

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An analytical consideration has been made to explore the velocity, temperature and nanoparticle distributions and heat transfer characteristics associated with thermal dispersion and nanoparticle mechanical dispersion within a nanofluid-saturated homogeneous metal foam. A volume-averaging theory was rigorously applied to integrate locally a set of governing equations based on the modified Buongiorno model at the pore scale. Thus, a macroscopic set of volume-averaged governing equations were derived allowing interstitial heat transfer between the nanofluid and metal phases. Unknown terms were modelled mathematically to obtain a closed set of volume-averaged governing equations. Subsequently, a pore-scale analysis was carried out to find possible functional forms for describing thermal dispersion and nanoparticle mechanical dispersion in a nanofluid-saturated metal foam. Using the resulting set of volume-averaged governing equations, forced convective flows in nanofluid-saturated metal foams were analytically investigated for the steady-state case. Eventually, it has been predicted that an unconventionally high level of the heat transfer rate (about 80 times more than the case of base fluid convection without a metal foam) may be achieved by combination of metal foam and nanofluid.
机译:已经进行了分析考虑,以探索与在纳米流体饱和的均质金属泡沫内的热分散和纳米颗粒机械分散相关的速度,温度和纳米颗粒分布以及传热特性。严格地应用了体积平均理论,以局部修正了基于修正的Buongiorno模型的孔隙尺度下的一组控制方程。因此,导出了体积平均控制方程的宏观集合,允许纳米流体和金属相之间的间隙热传递。对未知项进行数学建模,以获得一组封闭的体积平均控制方程。随后,进行了孔尺度分析以发现可能的功能形式,以描述在纳米流体饱和的金属泡沫中的热分散和纳米颗粒机械分散。使用所得的体积平均控制方程组,对稳态情况下的纳米流体饱和金属泡沫中的强制对流进行了分析研究。最终,已经预料到,通过金属泡沫和纳米流体的组合,可以实现非常规的高传热速率水平(比没有金属泡沫的基础流体对流情况高约80倍)。

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