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Energy and exergy analyses of a parabolic trough collector operated with nanofluids for medium and high temperature applications

机译:抛物线槽收集器与纳米流体进行中高温应用的能量和暴露分析

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摘要

Thermal performance of parabolic trough collectors (PTCs) can be improved by suspending nanoparticles into the traditionally used heat transfer fluids. In this work, a one-dimensional mathematical model is proposed to investigate the effect of various nanoprticles suspended in the working fluid for medium and high temperature PTCs. The major finding of this work is that the nanofluid enhances the thermal efficiency of the PTC slightly. High operating temperatures are more suitable for using nanofluids and generate higher relative gains of energy delivered. It is also found that the exergetic efficiency improvement is more important than energetic efficiency. The peak exergy efficiency is achieved by the CuO based nanofluid and is about 9.05%. The maximum daily relative gain of thermal energy delivered is found to be 1.46% by using 5% of Al2O3 in the base fluid. Optimal control of the operating conditions can lead to maximum energetic and exergetic performances of the PTC.
机译:通过将纳米颗粒悬浮到传统使用的传热流体中,可以改善抛物线槽收集器(PTC)的热性能。在这项工作中,提出了一种一维数学模型来研究悬浮在工作流体中的各种纳米额度的效果,用于中高温PTC。这项工作的主要发现是纳米流体略微增强了PTC的热效率。高效温度更适合使用纳米流体,并产生更高的能量获得能量。还发现,前进的效率改善比精力效率更重要。基于CuO的纳米流体实现了峰值高度效率,约为9.05%。通过在基础液中使用5%的Al 2 O 3,发现热能的最大每日相对增益为1.46%。操作条件的最佳控制可以导致PTC的最大能量和淬火性能。

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