Economic aspects of advanced energy technologies
Advanced energy technologies span a wide variety of resources, techniques, and end-user requirements. Economic considerations are major factors that shape their harnessing and utilization. A discussion of the basic factors in the economic arena is presented, with particular emphasis on renewable ene...
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Published in | Proceedings of the IEEE Vol. 81; no. 3; pp. 318 - 332 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
Published |
United States
IEEE
01.03.1993
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Abstract | Advanced energy technologies span a wide variety of resources, techniques, and end-user requirements. Economic considerations are major factors that shape their harnessing and utilization. A discussion of the basic factors in the economic arena is presented, with particular emphasis on renewable energy technologies-photovoltaics, solar-thermal, wind-electric conversion, biomass utilization, hydro, and tidal and wave energy systems. The following are viewed as essential to determine appropriate energy system topologies: proper resource-need matching with an eye on the quality of energy requirements, integrated use of several resources and technologies, and a comprehensive consideration which includes prospecting, collection, conversion, transportation, distribution, storage and reconversion, end use, and subsequent waste management aspects. A few case studies are included to show the status of some of the key technologies and systems.< > |
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AbstractList | Advanced energy technologies span a wide variety of resources, techniques, and end-user requirements. Economic considerations are major factors that shape their harnessing and utilization. A discussion of the basic factors in the economic arena is presented, with particular emphasis on renewable energy technologies-photovoltaics, solar-thermal, wind-electric conversion, biomass utilization, hydro, and tidal and wave energy systems. The following are viewed as essential to determine appropriate energy system topologies: proper resource-need matching with an eye on the quality of energy requirements, integrated use of several resources and technologies, and a comprehensive consideration which includes prospecting, collection, conversion, transportation, distribution, storage and reconversion, end use, and subsequent waste management aspects. A few case studies are included to show the status of some of the key technologies and systems.< > Advanced energy technologies span a wide variety of resources, techniques, and end-user requirements. Economic considerations are major factors that shape their harnessing and utilization. A discussion of the basic factors in the economic arena is presented, with particular emphasis on renewable energy technologies--photovoltaics, solar-thermal, wind-electric conversion, biomass utilization, hydro, and tidal and wave energy systems. The following are essential to determine appropriate energy system topologies: proper resource-need matching with an eye on the quality of energy requirements, integrated use of several resources and technologies, and a comprehensive consideration which includes prospecting, collection, conversion, transportation, distribution, storage and reconversion, end use, and subsequent waste management aspects. A few case studies are included to apprise the reader of the status of some of the key technologies and systems. Advanced energy technologies span a wide variety of resources, techniques, and end-user requirements. Economic considerations are major factors that shape their harnessing and utilization. A discussion of the basic factors in the economic arena is presented, with particular emphasis on renewable energy technologies-photovoltaics, solar-thermal, wind-electric conversion, biomass utilization, hydro, and tidal and wave energy systems. The following are essential to determine appropriate energy system topologies: proper resource-need matching with an eye on the quality of energy requirements, integrated use of several resources and technologies, and a comprehensive consideration which includes prospecting, collection, conversion, transportation, distribution, storage and reconversion, end use, and subsequent waste management aspects. A few case studies are included to appraise the reader of the status of some of the key technologies and systems. |
Author | Butler, N.G. Rodriguez, A.P. Ramakumar, R. Venkata, S.S. |
Author_xml | – sequence: 1 givenname: R. surname: Ramakumar fullname: Ramakumar, R. organization: Eng. Energy Lab., Oklahoma State Univ., Stillwater, OK, USA – sequence: 2 givenname: N.G. surname: Butler fullname: Butler, N.G. – sequence: 3 givenname: A.P. surname: Rodriguez fullname: Rodriguez, A.P. – sequence: 4 givenname: S.S. surname: Venkata fullname: Venkata, S.S. |
BackLink | https://www.osti.gov/biblio/6108107$$D View this record in Osti.gov |
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Cites_doi | 10.1109/60.182647 10.1109/MPER.1992.170927 10.1016/0038-092X(74)90006-1 10.1109/TEC.1987.4765855 10.1109/60.222697 10.1016/0360-5442(90)90105-B 10.1109/60.103635 10.1016/0038-092X(77)90024-X 10.1109/5.241491 10.1109/TE.1981.4321499 10.1007/978-1-4613-9948-3_2 10.1038/scientificamerican0990-146 10.1109/5.241490 10.1016/0038-092X(92)90116-R 10.1109/60.148562 10.2172/6909848 10.1109/TPAS.1983.317720 |
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SubjectTerms | 290201 - Energy Planning & Policy- Economics- (1992-) 299000 - Energy Planning & Policy- Unconventional Sources & Power Generation BIOMASS Cogeneration ECONOMICS ELECTRIC POWER ENERGY ENERGY PLANNING, POLICY AND ECONOMY Energy resources ENERGY SOURCES Energy storage Environmental economics HYDROELECTRIC POWER POWER Power engineering and energy Power generation Power generation economics Renewable energy resources RENEWABLE ENERGY SOURCES RENEWABLE RESOURCES RESOURCES SOLAR ENERGY TECHNOLOGY ASSESSMENT TIDAL POWER Transportation Waste management WAVE POWER WIND POWER |
Title | Economic aspects of advanced energy technologies |
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