Direct thermal to electrical energy conversion using very low bandgap TPV cells in a gas-fired furnace system
Author:
Publisher
Elsevier BV
Subject
Energy Engineering and Power Technology,Fuel Technology,Nuclear Energy and Engineering,Renewable Energy, Sustainability and the Environment
Reference20 articles.
1. Sai H, Kamikawa T, Kanamori Y, Hane K, Yugami H, Yamaguchi M. Thermophotovoltaic generation with microstructured tungsten selective emitters. In: Proceedings of the 6th conference on thermophotovoltaic generation of electricity; 2004. p. 206–14.
2. Heat transfer and thermophotovoltaic power generation in oil-fired heating systems;Butcher;Appl Energy,2011
3. Thermophotovoltaic generation of electricity in a gas fired heater: influence of radiant burner configurations and combustion processes;Qiu;Energy Convers Manage,2003
4. Kushch AS, Skinner SM, Brennan R, Sarmiento PA. Development of a cogenerating thermophotovoltaic powered combination hot water heater/hydronic boiler. In: Proceedings of the 3rd NREL conference on thermophotovoltaic generation of electricity; 1997. p. 373.
5. Performance of low bandgap thermophotovoltaic cells in a small cogeneration system;Qiu;Sol Energy,2003
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