Books on the topic 'Thermal renewable energy'

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1

Garg, H. P. Solar Thermal Energy Storage. Dordrecht: Springer Netherlands, 1985.

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2

Lee, Kun Sang. Underground Thermal Energy Storage. London: Springer London, 2013.

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3

Illinois. Department of Commerce and Economic Opportunity. Renewable Energy Resources Rebate Program. Springfield, Ill.]: [Illinois] Dept. of Commerce and Economic Opportunity, 2005.

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4

Joshi, Yogendra. Energy Efficient Thermal Management of Data Centers. Boston, MA: Springer US, 2012.

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5

Albarbar, Alhussein, and Canras Batunlu. Thermal Analysis of Power Electronic Devices Used in Renewable Energy Systems. Cham: Springer International Publishing, 2018. http://dx.doi.org/10.1007/978-3-319-59828-4.

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6

1936-, Wu Chih, ed. Renewable energy from the ocean: A guide to OTEC. New York: Oxford University Press, 1994.

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7

Garg, H. P. Physics and Technology of Solar Energy: Volume 1 Solar Thermal Applications. Dordrecht: Springer Netherlands, 1987.

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8

Casal, Federico G. Solar Thermal Power Plants: Achievements and Lessons Learned Exemplified by the SSPS Project in Almeria/Spain. Berlin, Heidelberg: Springer Berlin Heidelberg, 1987.

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9

Ö, Paksoy Halime, and NATO Public Diplomacy Division, eds. Thermal energy storage for sustainable energy consumption: Fundamentals, case studies and design. Dordrecht: Springer, 2007.

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10

Krishna, Ivan. A SOPAC desktop study of ocean-based renewable energy technologies. S.l.]: SOPAC, 2009.

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11

1932-, Kesselring P., Selvage C. S, International Energy Agency. International Test and Evaluation team, and IEA-SSPS-Project, eds. The IEA/SSPS solar thermal power plants: Facts and figures : final report of the International Test an Evaluation Team (ITET). Berlin: New York, 1986.

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12

Karl-Heinz, Remmers, and Schnauss Martin, eds. Solar thermal systems: Successful planning and construction. Berlin: Solarpraxis, 2002.

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13

Kesselring, Paul. The IEA/SSPS Solar Thermal Power Plants - Facts and Figures- Final Report of the International Test and Evaluation Team (ITET): Volume 4: Book of Summaries. Berlin, Heidelberg: Springer Berlin Heidelberg, 1986.

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14

Biomass for thermal energy and electricity: A research and development portfolio for the future : hearing before the Subcommittee on Energy and Environment, Committee on Science and Technology, House of Representatives, One Hundred Eleventh Congress, first session, October 21, 2009. Washington: U.S. G.P.O., 2010.

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15

Bartnik, Ryszard. The Modernization Potential of Gas Turbines in the Coal-Fired Power Industry: Thermal and Economic Effectiveness. London: Springer London, 2013.

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16

Tabarra, Mohammad. Load factor effects on thermally stratified solar storage tanks. Leicester: Leicester Polytechnic, 1985.

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17

Functional materials for sustainable energy applications. Oxford: Woodhead Pub., 2012.

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18

Alternate energy-related uses on the outer continental shelf: Hearing before the Committee on Energy and Natural Resources, United States Senate, One Hundred Tenth Congress, first session, to receive testimony on alternate energy-related uses on the outer continental shelf: opportunities, issues, and implementation of Section 388 of the Energy Policy Act of 2005, June 7, 2007. Washington: U.S. G.P.O., 2007.

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19

Desert energy: A guide to the technology, impacts, and opportunities. Abingdon, Oxon: Routledge, 2012.

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20

Desideri, Umberto, Giampaolo Manfrida, and Enrico Sciubba, eds. ECOS 2012. Florence: Firenze University Press, 2012. http://dx.doi.org/10.36253/978-88-6655-322-9.

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The 8-volume set contains the Proceedings of the 25th ECOS 2012 International Conference, Perugia, Italy, June 26th to June 29th, 2012. ECOS is an acronym for Efficiency, Cost, Optimization and Simulation (of energy conversion systems and processes), summarizing the topics covered in ECOS: Thermodynamics, Heat and Mass Transfer, Exergy and Second Law Analysis, Process Integration and Heat Exchanger Networks, Fluid Dynamics and Power Plant Components, Fuel Cells, Simulation of Energy Conversion Systems, Renewable Energies, Thermo-Economic Analysis and Optimisation, Combustion, Chemical Reactors, Carbon Capture and Sequestration, Building/Urban/Complex Energy Systems, Water Desalination and Use of Water Resources, Energy Systems- Environmental and Sustainability Issues, System Operation/ Control/Diagnosis and Prognosis, Industrial Ecology.
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21

Commission of the European Communities. Directorate-General Energy., ed. Promotion of energy technology for Europe: THERMIE : background information & procedure for the submission of projects in thefields of rational use of energy, renewable energy sources, solid fuels, hydrocarbons. [Luxembourg]: Commission of the European Communities, 1993.

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22

Lee, Kun Sang. Underground Thermal Energy Storage. Springer, 2012.

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23

Lee, Kun Sang. Underground Thermal Energy Storage. Springer, 2014.

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24

Wang, Zhifeng, and China Science China Science Publishing & Media Ltd. Solar Thermal Electricity Plant: Design and Planning. de Gruyter GmbH, Walter, 2050.

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25

Solar Thermal Electricity Plant: Design and Planning. de Gruyter GmbH, Walter, 2017.

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26

Wang, Zhifeng, and China Science China Science Publishing & Media Ltd. Solar Thermal Electricity Plant: Design and Planning. de Gruyter GmbH, Walter, 2050.

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27

R, Ramesh, Udayakumar K, and Anandakrishnan M, eds. Renewable energy technologies: Ocean thermal energy conversion and other sustainable energy options. New Delhi: Narosa, 1997.

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28

Ramesh, R., etc. (Ed.), ed. Renewable Energy Technologies: Ocean Thermal Conversion and Other Sustainable Energy Options. Narosa Publishing House, 1997.

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29

Sulaiman, Shaharin Anwar. Sustainable Thermal Power Resources Through Future Engineering. Springer, 2018.

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30

Kumar, Pramod, and Yogendra Joshi. Energy Efficient Thermal Management of Data Centers. Springer, 2012.

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31

Alobaid, Falah. Numerical Simulation for Next Generation Thermal Power Plants. Springer, 2018.

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32

Alobaid, Falah. Numerical Simulation for Next Generation Thermal Power Plants. Springer, 2019.

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33

Price, Gary D. Renewable Power and Energy, Volume II: Wind and Thermal Systems. Momentum Press, 2018.

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34

Qurashi, Ahsanulhaq. Metal Chalcogenide Nanostructures for Renewable Energy Applications. Wiley & Sons, Limited, John, 2014.

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35

Metal Chalcogenide Nanostructures for Renewable Energy Applications. Wiley-Scrivener, 2014.

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36

Avery, William H., and Chih Wu. Renewable Energy from the Ocean. Oxford University Press, 1994. http://dx.doi.org/10.1093/oso/9780195071993.001.0001.

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Scientists and engineers around the world are striving to develop new sources of energy. One source, ocean thermal energy conversion, has virtually unlimited potential. It is based on techniques that exploit heat produced by solar energy that may, in turn, be used to produce fuel and electricity. This book reviews the status and background of this promising technology. William H. Avery is the leading expert in this field, and his co-author Chih Wu is an authority on heat engine performance. Together they describe the workings of an OTEC power plant and how such a system might be implemented as part of a futuristic national energy strategy. The book is the only detailed presentation of basic OTEC technology, its testing and improvement. It is based on extensive development initiatives undertaken internationally during the period from 1974 through 1985. The book offers a thorough assessment of the economics of OTEC in comparison with other energy production methods. It will be of interest to a wide range of professionals in energy research, power and mechanical engineering, and to upper-level undergraduate students taking courses in these fields.
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37

Galvin, Ray, and Minna Sunikka-Blank. Critical Appraisal of Germany's Thermal Retrofit Policy: Turning down the Heat. Springer London, Limited, 2013.

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38

Thermal Energy Storage: Materials, Devices, Systems and Applications. Royal Society of Chemistry, The, 2020.

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39

Kumar, Pramod, and Yogendra Joshi. Energy Efficient Thermal Management of Data Centers. Springer New York, 2014.

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40

Galvin, Ray, and Minna Sunikka-Blank. A Critical Appraisal of Germany's Thermal Retrofit Policy: Turning Down the Heat. Springer, 2016.

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41

Albarbar, Alhussein, and Canras Batunlu. Thermal Analysis of Power Electronic Devices Used in Renewable Energy Systems. Springer, 2017.

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42

Albarbar, Alhussein, and Canras Batunlu. Thermal Analysis of Power Electronic Devices Used in Renewable Energy Systems. Springer, 2018.

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43

Du, Xiong, Gaoxian Li, Yaoyi Yu, Jun Zhang, and Cheng Qian. Thermal Reliability of Power Semiconductor Device in the Renewable Energy System. Springer, 2022.

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44

Renewable energy technology: A review of legislation, research, and trade. Washington, D.C: Library of Congress, Congressional Research Service, 1987.

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45

Liao, Zhijie. Thermal Springs and Geothermal Energy in the Qinghai-Tibetan Plateau and the Surroundings. Springer Singapore Pte. Limited, 2017.

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46

Liao, Zhijie. Thermal Springs and Geothermal Energy in the Qinghai-Tibetan Plateau and the Surroundings. Springer, 2018.

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47

A Critical Appraisal Of Germanys Thermal Retrofit Policy Turning Down The Heat. Springer London Ltd, 2013.

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48

Handagama, Nareshkumar B., Martin T. White, Paul Sapin, and Christos N. Markides. Renewable and Waste-Heat Utilization Technologies: Thermal Energy Recovery, Conversion, Upgrading and Storage. Cambridge University Press, 2023.

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49

D, Kilgroe James, United States. Environmental Protection Agency., Air & Waste Management Association., and A&WMA/EPA International Specialty Conference (1995 : Washington, D.C.), eds. Solid waste management: Thermal treatment & waste-to-energy technologies. Pittsburgh, Pa: Air & Waste Management Association, 1996.

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50

Peuser, Felix A., Karl-Heinz Remmers, and Martin Schnauss. Solar Thermal Systems: Successful Planning and Construction. Taylor & Francis Group, 2013.

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