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Conduction and convection heat transfer characteristics of water-based Au nanofluids in a square cavity with differentially heated side walls subjected to constant temperatures

机译:水基金纳米流体在方形腔中的传导和对流传热特性,其具有恒定温度的差动加热侧壁

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摘要

The present work deals with the natural convection in a square cavity filled with the water-based Au nanofluid. The cavity is heated on the vertical and cooled from the adjacent wall, while the other two horizontal walls are adiabatic. The governing differential equations have been solved by the standard finite volume method and the hydrodynamic and thermal fields were coupled together using the Boussinesq approximation. The main objective of this study is to investigate the influence of the nanoparticles\u27 volume fraction on the heat transfer characteristics of Au nanofluids at the given base fluid\u27s (i.e. water) Rayleigh number. Accurate results are presented over a wide range of the base fluid Rayleigh number and the volume fraction of Au nanoparticles. It is shown that adding nanoparticles in a base fluid delays the onset of convection. Contrary to what is argued by many authors, we show by numerical simulations that the use of nanofluids can reduce the heat transfer rate instead of increasing it.
机译:目前的工作是在充满水基金纳米流体的方腔中进行自然对流。空腔在垂直方向上被加热并从相邻的壁冷却,而其他两个水平壁是绝热的。控制微分方程已通过标准有限体积法求解,并且使用Boussinesq逼近将流体动力场和热场耦合在一起。这项研究的主要目的是研究在给定的基础流体(即水)瑞利数下,纳米粒子的体积分数对金纳米流体的传热特性的影响。在基础流体的瑞利数和金纳米颗粒的体积分数的大范围内都给出了准确的结果。结果表明,在基础流体中添加纳米颗粒会延迟对流的发生。与许多作者所论证的相反,我们通过数值模拟表明,使用纳米流体可以降低传热速率而不是提高传热速率。

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