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Numerical analysis of the thermal and thermodynamic performance of a parabolic trough solar collector using SWCNTs-Therminol®VP-l nanofluid

机译:使用SWCNTs-Therminol®VP-1纳米流体对抛物槽式太阳能集热器的热和热力学性能进行数值分析

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摘要

In this paper, energetic and exergetic performances of a parabolic trough solar collector using single walled carbon nanotubes (SWCNTs)-Therminol (R) VP-1 nanofluid were numerically investigated and presented. The main objective of this investigation was to determine the influence of high thermal conductivity SWCNTs suspended in the widely used heat transfer fluid, Therminol (R) VP-1 on the performance indicators of the parabolic trough solar collector. A parabolic trough system with a high concentration ratio of 113 was analyzed in this study. The thermo-physical properties of SWCNTs were taken as functions of nanotube length, nanotube diameter, and temperature, while the properties of Therminol (R) VP-1 were considered to be temperature dependent. The study involved determination of the actual heat flux profile through Monte Carlo ray tracing and the subsequent coupling of this heat flux profile to a computational fluid dynamics tool using user defined functions. The computational fluid dynamics tool was finite volume based, and the realizable k-epsilon model together with enhanced wall treatment were used for turbulence modeling. The entropy generation rates were obtained directly from the local velocity and temperature fields of the computed domain and later used in the exergy analysis. Results showed that although the heat transfer performance significantly improved with the use of SWCNTs, the increase in the thermal efficiency was not substantial. For the considered range of parameters, while the heat transfer performance increased up to 234%, the thermal efficiency increased around 4.4% as the volume fraction increased from 0 to 2.5%. The corresponding reduction in the entropy generation was about 70%. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在本文中,数值研究了使用单壁碳纳米管(SWCNT)-Therminol(R)VP-1纳米流体的抛物槽式太阳能集热器的能量和能量性能。这项研究的主要目的是确定悬浮在广泛使用的传热流体Therminol(R)VP-1中的高导热率SWCNT对抛物槽式太阳能集热器的性能指标的影响。在这项研究中分析了高浓度比为113的抛物线槽系统。 SWCNT的热物理性质被认为是纳米管长度,纳米管直径和温度的函数,而Therminol(R)VP-1的性质被认为是温度依赖性的。该研究涉及通过蒙特卡洛射线追踪确定实际的热通量分布,然后使用用户定义的函数将此热通量分布耦合到计算流体动力学工具。计算流体动力学工具是基于有限体积的,并将可实现的k-ε模型和增强的壁处理一起用于湍流建模。熵的产生率直接从计算域的局部速度和温度场获得,随后用于火用分析。结果表明,尽管使用SWCNT可以显着改善传热性能,但热效率的提高并不显着。对于所考虑的参数范围,虽然传热性能提高到234%,但随着体积分数从0%增加到2.5%,热效率提高了约4.4%。熵产生的相应减少约为70%。 (C)2017 Elsevier Ltd.保留所有权利。

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