Dataset supporting the journal article 'Comprehensive analysis of radiative cooling enabled thermoelectric energy harvesting'
Dataset supporting the journal article 'Comprehensive analysis of radiative cooling enabled thermoelectric energy harvesting'
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.
University of Southampton
Zhu, Yuxiao
0dd2c99f-c036-41dd-817d-4db9ecb051e4
Huang, Ruomeng
c6187811-ef2f-4437-8333-595c0d6ac978
Newbrook, Daniel
8eb26553-e1e2-492d-ad78-ce51a487f31f
De Groot, Kees
92cd2e02-fcc4-43da-8816-c86f966be90c
Zhu, Yuxiao
0dd2c99f-c036-41dd-817d-4db9ecb051e4
Huang, Ruomeng
c6187811-ef2f-4437-8333-595c0d6ac978
Newbrook, Daniel
8eb26553-e1e2-492d-ad78-ce51a487f31f
De Groot, Kees
92cd2e02-fcc4-43da-8816-c86f966be90c
Zhu, Yuxiao and Huang, Ruomeng
(2023)
Dataset supporting the journal article 'Comprehensive analysis of radiative cooling enabled thermoelectric energy harvesting'.
University of Southampton
doi:10.5258/SOTON/D2589
[Dataset]
Abstract
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.
Text
README_D2589.txt
- Dataset
Spreadsheet
Dataset.xlsx
- Dataset
More information
Published date: 2023
Identifiers
Local EPrints ID: 476796
URI: http://eprints.soton.ac.uk/id/eprint/476796
PURE UUID: 6de14f39-ab0a-4a14-bc5f-ee547b1e59c4
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Date deposited: 16 May 2023 16:43
Last modified: 17 Jul 2023 01:57
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Contributors
Creator:
Yuxiao Zhu
Creator:
Ruomeng Huang
Owner:
Daniel Newbrook
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