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Assisted convective heat transfer and entropy generation in a solar collector filled with nanofluid

机译:装有纳米流体的太阳能收集器中的辅助对流传热和熵产生

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Heat transfer phenomena of flat plate solar collector filled with different nanofluids has been investigated numerically. Galerkin’s Finite Element Method is used to solve the problem. Heat transfer rate, average bulk temperature, average sub-domain velocity, outlet temperature, thermal efficiency, mean entropy generation and Bejan number has been investigated by varying the solid nanoparticle volume fraction of water/Cu, water/Ag and water/Cu/Ag nanofluids from 0% to 3%. It is found that the solid nanoparticle volume fraction has great effect on heat transfer phenomena. It is observed that the increases of the solid volume fraction (up to 2%) enhances the heat transfer rate and collector efficiency where after 2% the rate of change almost constant. Higher heat transfer rate and collector efficiency has been obtained 19% and 13% for water/Ag nanofluid respectively.
机译:数值研究了填充有不同纳米流体的平板太阳能集热器的传热现象。 Galerkin的有限元方法用于解决该问题。通过改变水/铜,水/银和水/铜/银的固体纳米颗粒体积分数,研究了传热速率,平均体温,平均子域速度,出口温度,热效率,平均熵产生和贝詹数。纳米流体从0%到3%。发现固体纳米颗粒的体积分数对传热现象有很大的影响。可以看出,固体体积分数的增加(高达2%)提高了热传递速率和集热效率,其中2%之后,变化率几乎恒定。对于水/银纳米流体,分别获得了较高的传热速率和集热效率,分别为19%和13%。

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