首页> 外文会议>ASME international mechanical engineering congress and exposition >COMPARATIVE ANALYSIS BETWEEN WATER AND NANOFLUIDS AS WORKING FLUIDS IN PHOTOVOLTAIC THERMAL COLLECTORS
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COMPARATIVE ANALYSIS BETWEEN WATER AND NANOFLUIDS AS WORKING FLUIDS IN PHOTOVOLTAIC THERMAL COLLECTORS

机译:光电热收集器中作为工作流体的水和纳米流体的比较分析

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Photovoltaic thermal collectors (PV/T) are devices that produce both electrical and thermal energies simultaneously. Water acts as the working fluid that cools down the PV cells, thus improving their electrical efficiency, and at the same time hot water is produced due to the heat exchange process. As a consequence heat transfer augmentation is an important issue that affects the performance of such a hybrid system. The objective of the current study is to evaluate the effect of using a nanofluid on the performance of a photovoltaic thermal (PV/T) collector. The performance of the water cooled PV/T collector without nanofluid is first evaluated and then additional correlations are incorporated to include the nanofluid properties. Results showed that the use of nanofluid enhanced the rate of heat transfer which resulted in improvement in the performance of the PV/T collector. However, such improvement was not found to be significantly high to shift for nanofluids as working fluids in PV/T collectors.
机译:光伏集热器(PV / T)是同时产生电能和热能的设备。水充当冷却PV电池的工作流体,从而提高其电效率,同时由于热交换过程会产生热水。结果,传热增加是影响这种混合系统的性能的重要问题。当前研究的目的是评估使用纳米流体对光伏热(PV / T)集热器性能的影响。首先评估没有纳米流体的水冷式PV / T收集器的性能,然后将其他相关性纳入其中,以包括纳米流体的特性。结果表明,使用纳米流体可以提高热传递速率,从而提高PV / T收集器的性能。然而,发现对于纳米流体作为PV / T收集器中的工作流体,这种改进对转移纳米流体的影响不显着。

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