Dataset supporting the journal article 'Comprehensive analysis of radiative cooling enabled thermoelectric energy harvesting'
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https://eprints.soton.ac.uk/476796/
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Data supporting the article "Comprehensive analysis of radiative cooling enabled thermoelectric energy harvesting" Yuxiao Zhu, Daniel W. Newbrook, C. H. de Groot and Ruomeng Huang. Journal of Physics: Photonics, Volume 5, Number 2, 025002, DOI 10.1088/2515-7647/accac1 The Data is an excel file containing raw data for the paper: Fig. 1 Schematic and temperature-dependent material properties of the N-type and P-type thermoelectric materials used in our RC-TEG model. ( Fig. 2 Temperature profile of the RC-TEG under typical working conditions. (a) exposed radiative surface (b) shielded counter surface. Fig. 3 FEM simulation performance of RC-TEG under various top surface convection (ConvT) and bottom surface convection (ConvB) conditions. Fig. 4 Performance of RC-TEG obtained in COMSOL simulation as a function of atmosphere emissivity (a) Temperature difference (ΔT) and (b) Power density (PDmax). Fig. 5 Performance of RC-TEG as a function of emissivity in the solar and thermal IR spectrum. Fig. 6 (a) Temperature difference, (b) Power (Pmax), (c) Power density (PDmax) obtained from COMSOL simulation as a function of pitch and WCooler. ( Fig. 7 (a) Temperature difference, (b) PDmax obtained from COMSOL simulation as a function of HTE and WTE. Fig. 8 (a) Real-time temperature and (b) solar irradiance of London on 1st July 2021, 11th January 2021, Singapore on 1st July 2021, and 1st January 2021.
提供机构:
University of Southampton
创建时间:
2023-05-17



