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Thermal efficiency comparison: Surface-based solar receivers with conventional fluids and volumetric solar receivers with nanofluids

机译:热效率比较:具有常规流体的基于表面的太阳能接收器和具有纳米流体的容积式太阳能接收器

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This paper reports on a comparative study of the difference in thermal efficiency between surface-based solar receivers (SRs) with conventional base fluids and volumetric solar receivers (VRs) with water-based multi-walled carbon nanotubes (MWCNT) nanofluids. The analytical solutions for temperature distribution and thermal efficiency of SRs and VRs are theoretically obtained to identify the key engineering parameters that affect the thermal efficiency of both solar receivers. In order to confirm the analytical solutions, we experimentally measured the thermal efficiency of both solar receivers according to the volume fraction and the Peclet Number. Moreover, the experimental results are compared with the analytical solutions. Based on the comparison, we show that the analytical solutions can reasonably estimate the thermal efficiency with respect to the volume fraction and the Peclet number. Furthermore, the analytical and experimental results indicate that the efficiency of both solar receivers are proportional to the volume fraction (phi) (not applicable for SRs) and the Peclet number (Pe), while it is inversely proportional to the Nusselt number of heat loss (Nu) and the aspect ratio (AR). Finally, this study systematically demonstrates the nanofluid-based VRs can be achieved higher efficiency compared to the conventional SRs over 10%. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文报道了对传统基础流体的表面太阳能接收器(SR)与水基多壁碳纳米管(MWCNT)纳米流体的体积太阳能接收器(VR)之间热效率差异的比较研究。从理论上获得了SR和VR的温度分布和热效率的分析解决方案,以确定影响两个太阳能接收器热效率的关键工程参数。为了确定分析解决方案,我们根据体积分数和Peclet数通过实验测量了两个太阳能接收器的热效率。此外,将实验结果与解析解进行了比较。基于比较,我们表明分析解决方案可以合理地估计相对于体积分数和Peclet数的热效率。此外,分析和实验结果表明,两个太阳能接收器的效率均与体积分数(phi)(不适用于SR)和Peclet数(Pe)成正比,而与Nusselt的热损失数成反比(Nu)和长宽比(AR)。最后,这项研究系统地证明了与传统SR相比,基于纳米流体的VR可以实现更高的效率,超过10%。 (C)2016 Elsevier Ltd.保留所有权利。

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