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Natural convection of water-CuO nanofluid in a cavity with two pairs of heat source-sink

机译:水-CuO纳米流体在带有两对热源-散热器的空腔中的自然对流

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摘要

Natural convection in a two-dimensional square cavity filled with a water-CuO nanofluid is numerically studied. Two pairs of heat source-sink are considered to cover the entire length of the bottom wall of the cavity while the other walls are thermally insulated. The nanofluid is assumed to be homogenous and Newtonian. The governing differential equations are discretised by the control volume approach and the coupling between velocity and pressure is solved using the SIMPLE algorithm. A comparison study is presented between two cases with different arrangements of the two pairs on the bottom wall. The effects of Rayleigh number and solid volume fraction of the nanofluid on the heat transfer rate have also been examined. The results show that regardless of the position of the pairs of source-sink, the heat transfer rate increases with an increase of the Rayleigh number and the solid volume fraction.
机译:对水-CuO纳米流体填充的二维方腔中的自然对流进行了数值研究。两对热源散热器被认为覆盖了腔体底壁的整个长度,而其他壁都是隔热的。假定纳米流体是均质的和牛顿的。通过控制体积法离散控制微分方程,并使用SIMPLE算法求解速度和压力之间的耦合。在底壁上两对的布置不同的两个案例之间进行了比较研究。还研究了瑞利数和纳米流体的固体体积分数对传热速率的影响。结果表明,不管源汇对的位置如何,传热速率都随着瑞利数和固体体积分数的增加而增加。

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