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A computational work on a three dimensional analysis of natural convection and entropy generation in nanofluid filled enclosures with triangular solid insert at the corners

机译:三维流体填充腔体中自然对流和熵产生的三维分析的计算工作,该腔体在角处有三角形固体插入物

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Laminar three dimensional flow and heat transfer in a nanofluid filled cavity with solid insert at the corners is analyzed computationaly by using finite volume method. Entropy generation is also presented from the obtained results of velocity and temperature values. In order to simulate nanofluids, an in-house numerical method was developed based on the solution of three dimensional solution of Navier-Stokes equations.Three cases are studied based on number and location of solid inserts. Effects of Rayleigh number (10(4) <= Ra <= 10(6)), nanoparticle volume fraction (0 <= phi <= 0.15) and thermal conductivity ratio (0.01 <= Rc <= 100) are analyzed on natural convection and entropy generation. It is observed that a three dimensional solution brings a more understanding work for the study. Higher heat transfer and entropy generation are observed in the case of nanoparticle addition into base fluid. In any case, partitions can be used as a control element for heat and fluid flow and energy consumption. (c) 2016 Elsevier B.V. All rights reserved.
机译:利用有限体积法计算了在角填充固体的纳米流体填充腔中的层流三维流动和传热。从速度和温度值的获得结果还可以显示熵的产生。为了模拟纳米流体,基于Navier-Stokes方程的三维解,开发了一种内部数值方法,并根据固体插入物的数量和位置研究了三种情况。分析了自然对流的瑞利数(10(4)<= Ra <= 10(6)),纳米颗粒体积分数(0 <= phi <= 0.15)和热导率(0.01 <= Rc <= 100)的影响和熵的产生。可以看出,三维解决方案为该研究带来了更多的理解工作。在将纳米颗粒添加到基础流体中的情况下,观察到更高的热传递和熵产生。在任何情况下,隔板都可以用作热量和流体流量以及能量消耗的控制元素。 (c)2016 Elsevier B.V.保留所有权利。

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