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Thermodynamic limits to the efficiency of solar energy conversion by quantum devices

Authors :
Buoncristiani, A. M
Byvik, C. E
Smith, B. T
Publication Year :
1981
Publisher :
United States: NASA Center for Aerospace Information (CASI), 1981.

Abstract

The second law of thermodynamics imposes a strict limitation to the energy converted from direct solar radiation to useful work by a quantum device. This limitation requires that the amount of energy converted to useful work (energy in any form other than heat) can be no greater than the change in free energy of the radiation fields. Futhermore, in any real energy conversion device, not all of this available free energy in the radiation field can be converted to work because of basic limitations inherent in the device itself. A thermodynamic analysis of solar energy conversion by a completely general prototypical quantum device is presented. This device is completely described by two parameters, its operating temperature T sub R and the energy threshold of its absorption spectrum. An expression for the maximum thermodynamic efficiency of a quantum solar converter was derived in terms of these two parameters and the incident radiation spectrum. Efficiency curves for assumed solar spectral irradiance corresponding to air mass zero and air mass 1.5 are presented.

Subjects

Subjects :
Energy Production And Conversion

Details

Language :
English
Database :
NASA Technical Reports
Notes :
RTOP 506-55-13-03
Publication Type :
Report
Accession number :
edsnas.19820010823
Document Type :
Report