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Numerical investigation of heat transfer enhancement in a square ventilated cavity with discrete heat sources using nanofluid

机译:采用纳米流体离散热源的正方形通风腔中传热增强的数值研究

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摘要

A numerical study of a laminar mixed convection problem in a ventilated square cavity partially heated from bellow is carried out. The fluid in the cavity is a water-based nanofluid containing Cu nanoparticles. The effects of monitoring parameters, namely, Richardson number, Reynolds number, and solid volume fraction on the streamline and isotherm contours as well as average Nusselt number along the two heat sources are analyzed. The computation is performed for Richardson number ranging from 0.1 to 10, Reynolds number from 10 to 500, and the solid volume fraction from 0 to 0.1. The results show that by adding nanoparticles to the base fluid and increasing both Reynolds and Richardson numbers the heat transfer rate is enhanced. It is also found, regardless of the Richardson and Reynolds numbers, and the volume fraction of nanoparticles, the highest heat transfer enhancement occurs at the left heat source surface.
机译:进行了从波纹管部分加热的通风方腔中层状混合对流问题的数值研究。 腔体中的流体是含有Cu纳米颗粒的水基纳米流体。 分析了监测参数,即Richardson号,雷诺数,沿着两个热源的平均水平数量的监测参数,Richardson号,Reynolds数和固体体积分数。 对于从10至500的0.1至10,雷诺数的Richardson号来执行计算,并且固体体积分数为0至0.1。 结果表明,通过向基础流体添加纳米颗粒并增加雷诺和Richardson数量,增强了传热速率。 也发现,无论Richardson和Reynolds数,以及纳米颗粒的体积分数,最高的传热增强发生在左热源表面。

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