Applied thermal engineering2022,Vol.20313.DOI:10.1016/j.applthermaleng.2021.117948

Optical properties and photothermal conversion performances of graphene based nanofluids

Li, Zhijing Kan, Ankang Wang, Kongxiang He, Yan Zheng, Ni Yu, Wei
Applied thermal engineering2022,Vol.20313.DOI:10.1016/j.applthermaleng.2021.117948

Optical properties and photothermal conversion performances of graphene based nanofluids

Li, Zhijing 1Kan, Ankang 1Wang, Kongxiang 1He, Yan 2Zheng, Ni 1Yu, Wei3
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作者信息

  • 1. Shanghai Maritime Univ
  • 2. Qingdao Univ Sci & Technol
  • 3. Shanghai Polytech Univ
  • 折叠

Abstract

Direct absorption solar collectors (DASC) are extremely attractive in solar energy utilization. In this paper, starting from these two aspects, graphene-based nanofluids, including single-layer graphene (SLG) and graphene oxide (GO), are prepared to enhance solar absorption and photothermal conversion performance. The influence of nanofluids' concentration and two different irradiation modes: traditional DASC and reverse radiation DASC (RI-DASC) on the photothermal conversion performance of graphene-based nanofluids has been studied. The addition of a small amount of SLG or GO significantly improves the photothermal conversion efficiency of base fluid, and it increases along with the increase of the concentration. Furthermore, the RI-DASC mode has a more uniform thermal field distribution and the higher photothermal conversion efficiency than the DASC mode. In DASC mode, the photothermal conversion efficiency of pure water is 17.00%. By changing the irradiation mode, the introduction of GO and SLG nanofluids (100 ppm) increased the photothermal conversion efficiency by about 172% and 189%, reaching 46.26% and 49.13%. According to the photothermal-thermoelectric conversion experiment, the positive correlation between the output power of the TE module and the heating state of the nanofluid makes it possible to adjust the nanofluid in real-time. This work presents a feasible way to enhance solar energy absorption and improve the photothermal conversion efficiency of nanofluids for DASC.

Key words

Graphene/Nanofluids/Photothermal conversion/Optical property/Direct absorption solar collectors/SOLAR POWER-SYSTEMS/NANOPLATELETS NANOFLUID/ABSORPTION MEASUREMENTS/THERMAL-CONDUCTIVITY/NUMERICAL-SIMULATION/OXIDE NANOPARTICLES/COLLECTORS/EFFICIENCY/STABILITY/BEHAVIOR

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出版年

2022
Applied thermal engineering

Applied thermal engineering

EISCI
ISSN:1359-4311
被引量26
参考文献量51
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