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Investigation of CoSO_4-based Ag nanofluids as spectral beam splitters for hybrid PV/T applications

机译:基于CoSO_4的Ag纳米流体作为混合PV / T应用的光谱分束器的研究

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Nanofluid can be used as an effective spectral beam splitter to enhance the performance of hybrid PV/T system. In this work, we innovatively developed CoSO4-based Ag nanofluid which might be utilized as fluid optical filter for hybrid PV/T system with silicon concentrator (CPV) solar cell. Firstly, highly dispersed Ag/CoSO4 nanofluids with various concentrations were prepared. The results from the measured optical transmittance of the prepared nanofluids show that Ag/CoSO4 nanofluid has a strong absorption over a broader spectrum than that of water-based one. Subsequently, the effect of Ag nanofluids filters on the electrical performance of the silicon CPV cell was discussed. Ag/CoSO4 nanofluids produce lower short circuit current and thus lower electrical output than Ag/water nanofluids at the same mass fraction of Ag nanoparticles, whereas they yield higher stagnation temperature than Ag/water nanofluids. A theoretical model for optimizing the optical properties of the nanofluids filters and determining merit function (MF) was introduced to evaluate the filtering performance of Ag/CoSO4 nanofluids in PV/T systems. The results show that the MF value of PV/T system with Ag/CoSO4-2 nanofluid filter is greater than both that with a typical Ag-SiO2 (core-shell)/water nanofluid filter and with a Ag/water nanofluid filter. And the calculated MF values for PV/T systems with Ag/CoSO4 nanofluid filters reach a nearly constant value higher than 1.371 when the mass fraction of Ag nanoparticles contained in the Ag/CoSO4 nanofluid ranging from 24 ppm to 57 ppm. Peak MF value is achieved when the mass fraction of Ag nanoparticles is 37 ppm.
机译:纳米流体可以用作有效的光谱分束器,以增强混合PV / T系统的性能。在这项工作中,我们创新地开发了基于CoSO4的Ag纳米流体,可将其用作带有硅浓缩器(CPV)太阳能电池的混合PV / T系统的流体滤光器。首先,制备了各种浓度的高度分散的Ag / CoSO4纳米流体。从所制备的纳米流体的透光率的测量结果表明,与水基纳米流体相比,Ag / CoSO4纳米流体在更宽的光谱范围内具有强吸收性。随后,讨论了Ag纳米流体过滤器对CPV硅电池电性能的影响。 Ag / CoSO4纳米流体在相同质量百分比的Ag纳米颗粒的情况下产生的短路电流比Ag /水纳米流体低,因此其电输出更低,而与Ag /水纳米流体相比,它们产生的停滞温度更高。为了优化PV / T系统中Ag / CoSO4纳米流体的过滤性能,引入了一种用于优化纳米流体滤光器的光学性能并确定优值函数(MF)的理论模型。结果表明,具有Ag / CoSO4-2纳米流体滤池的PV / T系统的MF值均大于典型的Ag-SiO2(核壳)/水纳米流体滤池和具有Ag /水纳米流体滤池的MF / T系统的MF值。当包含在Ag / CoSO4纳米流体中的Ag纳米颗粒的质量分数在24 ppm至57 ppm之间时,使用Ag / CoSO4纳米流体过滤器的PV / T系统的计算MF值几乎达到恒定值,高于1.371。当Ag纳米颗粒的质量分数为37ppm时,达到MF峰值。

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