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Heat transfer by nanofluids through a flat plate solar collector

机译:通过平板太阳能收集器通过纳米流体传热

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Forced convective flow and heat transfer by different nanofluids through a fiat plate solar collector is analyzed numerically by this article. The solar collector has the flat-plate cover and sinusoidal wavy absorber. Four different nanofluids like water-Ag nanofluid, water based Cu nanofluid, water-AkCb nanofluid and water-CuO nanofiuid are used as the operational fluids inside the solar collector. The governing partial differential equations with proper boundary conditions are solved by Finite Element Method using Galerkin's weighted residual scheme. The behavior of different nanofluids related to performance such as temperature and velocity distributions, radiative and convective heat transfers, mean temperature and velocity of the nanofluid is investigated systematically. This performance includes the solid volume fraction namely Φ with respect to above mentioned nanofluids. The results show that the better performance of heat transfer inside the collector is found by using the highest Φ of water based Ag nanofluid.
机译:通过该制品在数值上通过菲亚特板太阳能收集器通过不同纳米流体的强制对流流量和热传递。太阳能收集器具有平板盖和正弦波薄吸收器。四种不同的纳米流体,如水 - Ag纳米流体,水基Cu纳米流体,水 - aKCB纳米流体和水 - CuO纳米脲作为太阳能收集器内的操作流体。利用Galerkin的加权残留方案,通过有限元方法解决了具有适当边界条件的控制局部微分方程。不同纳米流体与性能相关的不同纳米流体,如温度和速度分布,辐射和对流热转移,纳米流体的平均温度和速度,系统地研究。该性能包括相对于上述纳米流体的固体体积分数。结果表明,通过使用基于水的Ag纳米流体的最高φ,找到收集器内部的热传递的更好性能。

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