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- W4224694753 abstract "Nanofluid-based spectral splitting photovoltaic/thermal (NSS-PVT) technology has been becoming a hot topic in solar domains. However, current knowledge on the temperature dependency of optical properties of nanofluids (NFs) is insufficient. Therefore, in this paper, a comprehensive investigation on the optical properties of the NFs under high temperatures was performed based on: (1) the selection and preparation of NFs; (2) the measurements of high-temperature transmittance; (3) the inversion of complex refractive index; and (4) the prediction of the optical properties of NFs. From the results, the Ag/glycol NFs showed excellent optical properties and strong stability under high temperatures. Furthermore, the transmittance of Ag NFs and base fluid was measured under high temperatures (~170 °C). On this basis, the complex refractive index of Ag NFs under high temperatures were inversed by the double optical path-length transmittance method (DOPTM). Finally, a temperature-related Beer-Lambert model was established to predict the optical properties of Ag NFs across temperatures. By introducing the volume expansion coefficient of the base fluid, the optical properties of Ag NFs at different temperatures were successfully obtained. The error analysis was performed with a root mean square error (RMSE) of below 0.47 cm−1 and a correlation coefficient (γ) of higher than 0.98." @default.
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- W4224694753 date "2022-06-01" @default.
- W4224694753 modified "2023-10-16" @default.
- W4224694753 title "Experimental investigation on the optical properties of ag nanofluids under high temperatures" @default.
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- W4224694753 doi "https://doi.org/10.1016/j.icheatmasstransfer.2022.106059" @default.
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