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Efficiency of a volumetric receiver using aqueous suspensions of multi-walled carbon nanotubes for absorbing solar thermal energy

机译:使用多壁碳纳米管的水悬浮液吸收太阳能热的容积式接收器的效率

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This paper analytically investigates the efficiency of a nanofluid volumetric receiver (NVR) for absorbing solar thermal energy considering the experimentally measured extinction coefficient of aqueous suspensions of multi-walled carbon nanotubes (MWCNT) according to the wavelength from 200 to 2000 nm. For this purpose, considering the spectral behavior of nanofluids, we obtained analytical solutions of temperature fields as well as the efficiency of the NVR based on the condition of fully developed flow between the two plates. The aqueous MWCNT nanofluids were prepared using the two-step method, and their extinction coefficients were experimentally measured by the UV/Vis/NIR spectrophotometer according to the wavelength. With the analytical equations, we identified those key engineering parameters that affect the efficiency of an NVR: the Nusselt number of heat loss, the concentration of nanoparticles, the Peclet number, and aspect ratio. Also, we systematically observed the effects of key engineering parameters on the temperature fields and on the efficiency of the NVR. The current results clearly show that the efficiency calculated under the assumption of plug-flow through an NVR reported by previous researchers is overestimated in the case of high heat loss. Moreover, the present results show that NVR efficiency is proportional to the Peclet number as well as to the concentration of nanoparticles, while it is inversely proportional to the Nusselt number of heat loss and aspect ratio. The results of this study may be helpful to design and predict the efficiency of an NVR.
机译:考虑到实验测量的多壁碳纳米管(MWCNT)的水悬浮液的消光系数,根据200至2000 nm的波长,本文分析性地研究了纳米流体体积接收器(NVR)吸收太阳能的效率。为此,考虑到纳米流体的光谱行为,我们基于两块板之间充分流动的条件获得了温度场的解析解以及NVR的效率。采用两步法制备了水性MWCNT纳米流体,并根据波长用UV / Vis / NIR分光光度计通过实验测量了它们的消光系数。通过分析方程式,我们确定了影响NVR效率的关键工程参数:热损失的Nusselt数,纳米颗粒的浓度,Peclet数和纵横比。此外,我们系统地观察了关键工程参数对温度场和NVR效率的影响。目前的结果清楚地表明,在高热量损失的情况下,先前研究人员报告的在通过NVR的塞流条件下计算的效率被高估了。此外,目前的结果表明,NVR效率与Peclet数以及纳米颗粒的浓度成正比,而与Nusselt的热损失数和纵横比成反比。这项研究的结果可能有助于设计和预测NVR的效率。

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