Greater Than 20% Radiant Heat Conversion Efficiency of a Thermophotovoltaic Radiator/Module System Using Reflective Spectral Control
Autor: | R. J. Wehrer, R. G. Mahorter, F. Newman, S. Murray, S. D. Link, C.S. Murray, B. Wernsman, R. R. Siergiej, R. W. Schultz, D. Taylor, T. Rahmlow, R. L. Messham, G. P. Schmuck, M. N. Palmisiano, D.M. DePoy |
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Rok vydání: | 2004 |
Předmět: |
Temperature control
Materials science business.industry Photovoltaic system Energy conversion efficiency Radiation Electronic Optical and Magnetic Materials law.invention Optics law Thermophotovoltaic Optical cavity Radiator (engine cooling) Optoelectronics Electrical and Electronic Engineering business Power density |
Zdroj: | IEEE Transactions on Electron Devices. 51:512-515 |
ISSN: | 0018-9383 |
DOI: | 10.1109/ted.2003.823247 |
Popis: | An InGaAs monolithic interconnected module (MIM) using reflective spectral control has been fabricated and measured in a thermophotovoltaic radiator/module system (radiator, optical cavity, and thermophotovoltaic module). Results showed that at a radiator and module temperature of 1039/spl deg/C and 25/spl deg/C, respectively, 23.6% thermophotovoltaic radiator/module system radiant heat conversion efficiency and 0.79W/cm/sup 2/ maximum thermophotovoltaic radiator/module system power density were obtained. The use of reflective spectral control increased the spectral efficiency and thus the thermophotovoltaic radiator/module system radiant heat conversion efficiency by /spl sim/16% (relative). However, the amount of useful radiation reaching the MIM decreased by /spl sim/7% (relative) compared to using transmissive spectral control. Also, the thermophotovoltaic system radiant heat conversion efficiency and maximum power density using either transmissive or reflective spectral control decreased as the MIM temperature increased. The MIM using reflective spectral control was found to be more sensitive to changes in the MIM temperature than the MIM using transmissive spectral control. |
Databáze: | OpenAIRE |
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