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Hybrid photovoltaic-thermoelectric system for concentrated solar energy conversion: Experimental realization and modeling.

Authors :
Beeri, Ofer
Rotem, Oded
Hazan, Eden
Katz, Eugene A.
Braun, Avi
Gelbstein, Yaniv
Source :
Journal of Applied Physics. 2015, Vol. 118 Issue 11, p115104-1-115104-8. 8p. 1 Color Photograph, 3 Diagrams, 2 Charts, 6 Graphs.
Publication Year :
2015

Abstract

An experimental demonstration of the combined photovoltaic (PV) and thermoelectric conversion of concentrated sunlight (with concentration factor, X, up to ~300) into electricity is presented. The hybrid system is based on a multi-junction PV cell and a thermoelectric generator (TEG). The latter increases the electric power of the system and dissipates some of the excessive heat. For X≤200, the system's maximal efficiency, ~32%, was mostly due to the contribution from the PV cell. With increasing X and system temperature, the PV cell's efficiency decreased while that of the TEG increased. Accordingly, the direct electrical contribution of the TEG started to dominate in the total system power, reaching ~20% at X ≈ 290. Using a simple steady state finite element modeling, the cooling effect of the TEG on the hybrid system's efficiency was proved to be even more significant than its direct electrical contribution for high solar concentrations. As a result, the total efficiency contribution of the TEG reached ~40% at X ≈ 200. This suggests a new system optimization concept that takes into account the PV cell's temperature dependence and the tradeoff between the direct electrical generation and cooling capabilities of the TEG. It is shown that the hybrid system has a real potential to exceed 50% total efficiency by using more advanced PV cells and TE materials. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00218979
Volume :
118
Issue :
11
Database :
Academic Search Index
Journal :
Journal of Applied Physics
Publication Type :
Academic Journal
Accession number :
109563028
Full Text :
https://doi.org/10.1063/1.4931428