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1

Parliment, Thomas H., Robert J. McGorrin, and Chi-Tang Ho, eds. Thermal Generation of Aromas. American Chemical Society, 1989. http://dx.doi.org/10.1021/bk-1989-0409.

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2

1939-, Parliment Thomas H., McGorrin Robert J. 1951-, Ho Chi-Tang 1944-, American Chemical Society. Division of Agricultural and Food Chemistry., and American Chemical Society Meeting, eds. Thermal generation of aromas. American Chemical Society, 1989.

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3

Erich, Schneider Klaus, ed. Thermal spraying for power generation components. Wiley-VCH, 2006.

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4

Stovall, Therese K., and Thomas Whitaker, eds. Next-Generation Thermal Insulation Challenges and Opportunities. ASTM International, 2014. http://dx.doi.org/10.1520/stp1574-eb.

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5

Subramanian, S. A. Thermal power generation, an overview: Lectures & papers. Research Scheme on Power, Central Board of Irrigation and Power, 1985.

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6

Chmielniak, Tadeusz. Diagnostics of new-generation thermal power plants. Wydawnictwo IMP PAN, 2008.

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7

Barker, Colin. Thermal modeling of petroleum generation: Theory and applications. Elsevier, 1996.

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8

Alobaid, Falah. Numerical Simulation for Next Generation Thermal Power Plants. Springer International Publishing, 2018. http://dx.doi.org/10.1007/978-3-319-76234-0.

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9

Organization, Asian Productivity, ed. Thermal power generation and distribution: Achieving higher efficiency. Asian Productivity Organization, 1988.

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10

Fletcher, A. J. Thermal stress and strain generation in heat treatment. Elsevier Applied Science, 1989.

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11

1924-, Clark Samuel Kelly, and United States. National Aeronautics and Space Administration. Scientific and Technical Information Office., eds. Heat generation in aircraft tires under yawed rolling conditions. National Aeronautics and Space Administration, Scientific and Technical Information Office, 1987.

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12

Maurizio, Cumo, and Naviglio Antonio, eds. Thermal hydraulic design of components for steam generation plants. CRC Press, 1991.

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13

Wijayatunga, Priyantha D. C. Sri Lanka electricity industry: Long term thermal generation fuel options. Institute of Policy Studies, 2002.

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14

Hacha, Thomas H. Thermal control system for Space Station Freedom photovoltaic power module. National Aeronautics and Space Administration, 1994.

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15

M, Becker, Klimas Paul C, Chavez James M, et al., eds. Second generation central receiver technologies: A status report. C.F. Müller, 1993.

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16

Robert, Moran. Solar thermal and photovoltaics: World growth markets. Business Communications Co., 1996.

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17

Handschuh, Robert F. Thermal behavior of spiral bevel gears. National Aeronautics and Space Administration, 1995.

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18

Glikson, M., and M. Mastalerz, eds. Organic Matter and Mineralisation: Thermal Alteration, Hydrocarbon Generation and Role in Metallogenesis. Springer Netherlands, 2000. http://dx.doi.org/10.1007/978-94-015-9474-5.

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19

1945-, Glikson Miryam, and Mastalerz Maria, eds. Organic matters and mineralisation: Thermal alteration, hydrocarbon generation, and role in metallogenesis. Kluwer Academic Publishers, 1999.

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20

Baumeister, Joseph F. Comparative thermal analysis of the space station Freedom Photovoltaic Deployable Boom structure using TRASYS, NEVADA, and SINDA programs. National Aeronautics and Space Administration, 1989.

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21

Webb, D. D. Effects of natural environment on first generation solid rocket booster thermal protection system materials. National Aeronautics and Space Administration, George C. Marshall Space Flight Center, 1988.

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22

Canada, Canada Environment, and River Road Environmental Technology Centre. Pollution Measurement Division., eds. Protocols and performance specifications for continuous monitoring of gaseous emissions from thermal power generation. Canada Environment Canada, 1993.

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23

Webb, D. D. Effects of natural environment on first generation solid rocket booster thermal protection system materials. National Aeronautics and Space Administration, George C. Marshall Space Flight Center, 1988.

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24

Canada, Canada Environment, ed. Protocols and performance specifications for continuous monitoring of gaseous emissions from thermal power generation. Environment Canada, 2005.

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25

1947-, Miller Robert A., Jacobson Nathan S, and United States. National Aeronautics and Space Administration., eds. New generation of plasma-sprayed mullite coatings on silicon carbide. National Aeronautics and Space Administration, 1995.

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26

1947-, Miller Robert A., Jacobson Nathan S, and United States. National Aeronautics and Space Administration., eds. New generation of plasma-sprayed mullite coatings on silicon carbide. National Aeronautics and Space Administration, 1995.

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27

1947-, Miller Robert A., Jacobson Nathan S, and United States. National Aeronautics and Space Administration., eds. New generation of plasma-sprayed mullite coatings on silicon carbide. National Aeronautics and Space Administration, 1995.

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28

1947-, Miller Robert A., Jacobson Nathan S, and United States. National Aeronautics and Space Administration., eds. New generation of plasma-sprayed mullite coatings on silicon carbide. National Aeronautics and Space Administration, 1995.

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29

National Renewable Energy Laboratory (U.S.) and International Conference on Concentrating Photovoltaic Systems (7th : 2011 : Las Vegas, Nev.), eds. Determining outdoor CPV cell temperature: Preprint. National Renewable Energy Laboratory, 2011.

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30

S, Mehos Mark, and National Renewable Energy Laboratory (U.S.), eds. Enabling greater penetration of solar power via the use of CSP with thermal energy storage. National Renewable Energy Laboratory, 2011.

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31

Kudinov, Anatoliy, Svetlana Ziganshina, and Kirill Husainov. Calculation of thermal schemes of combined-cycle gas installations of thermal power plants. INFRA-M Academic Publishing LLC., 2023. http://dx.doi.org/10.12737/1865669.

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Abstract:
The fundamentals of the theory of increasing the thermal efficiency of power plants through the use of gas turbine and combined-cycle technologies are presented. The classification is given, the basic and calculated thermal schemes, parameters and characteristics of gas turbine and combined-cycle gas installations of various types are given, the principles of their operation are described. The designs of combustion chambers and features of fuel combustion in the combustion chambers of gas turbine installations are given. Methods and examples of calculation of thermal schemes of gas turbine ins
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32

Li, Jing. Structural Optimization and Experimental Investigation of the Organic Rankine Cycle for Solar Thermal Power Generation. Springer Berlin Heidelberg, 2015. http://dx.doi.org/10.1007/978-3-662-45623-1.

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33

Seminar on Thermal Generation in India--Fuel and Transport Logistics (1999 Madras, India). Seminar on Thermal Generation in India--Fuel and Transport Logistics: 2-3 December, 1999 : proceedings. Edited by Varma C. V. J, Lal P. K, Council of Power Utilities (New Delhi, India), and India. Central Board of Irrigation and Power. The Council, 1999.

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34

International, Conference THERMES (2002 Santa Fe N. M. ). Thermal challenges in next generation electronic systems: Proceedings of the International Conference THERMES 2002, Santa Fe, New Mexico, USA, 13-16 January 2002. Millpress, 2002.

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35

Institution of Engineering and Technology. Thermal Power Plant Simulation and Control. IET, 2003.

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36

Center, Langley Research, ed. Evaluation of an adaptive unstructured remeshing technique for integrated fluid-thermal-structural analysis. National Aeronautics and Space Administration, Langley Research Center ; a [Springfield, Va., 1990.

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37

Bayler, Eric Judson. Seasonal wind and ocean thermal forcing influences on the generation of the Leeuwin Current and its eddies. Naval Postgraduate School, 1991.

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38

Cropper, Maureen L. Estimating the impact of restructuring on electricity generation efficiency: The case of the Indian Thermal Power Sector. National Bureau of Economic Research, 2011.

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39

United States. National Aeronautics and Space Administration. and Langley Research Center, eds. An implementation of a chemical and thermal nonequilibrium flow solver on unstructured meshes and application to blunt bodies. National Aeronautics and Space Administration, Langley Research Center, 1994.

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40

Holdup, Edwin D. The history of thermal-electric power generation in Canada, 1891 to 1990: A paper for presentation to the Thermal and Nuclear Power Section, Canadian Electrical Association centennial meeting, May 1991, Toronto, Ontario. The Association, 1991.

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41

Holdup, Edwin D. The history of thermal-electric power generation in Canada 1891-to 1990: A paper for presentation to the Thermal and Nuclear Power Section, Canadian Electrical Association, Centennial Meeting, May, 1991, Toronto, Ontario. The Association, 1992.

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42

Geological Survey (U.S.), ed. Thermal and petroleum generation history of the Mississippian Eleana Formation and Tertiary source rocks, Yucca Mountain area, southern Nye County, Nevada. U.S. Dept. of the Interior, U.S. Geological Survey, 1994.

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43

K, Kokula Krishna Hari, ed. Genetic Algorithm Approach to Solve Economic Load Dispatch Problem on Three Thermal Plants and A Combined Cycle Co-Generation Plant: ICIEMS 2014. Association of Scientists, Developers and Faculties, 2014.

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44

Schneider, Klaus Erich, Vladimir Belashchenko, Marian Dratwinski, Stephan Siegmann, and Alexander Zagorski. Thermal Spraying for Power Generation Components. Wiley & Sons, Limited, John, 2006.

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45

Solar Receivers for Thermal Power Generation. Elsevier, 2022. http://dx.doi.org/10.1016/c2020-0-02543-0.

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46

Schneider, Klaus Erich, Vladimir Belashchenko, Marian Dratwinski, Stephan Siegmann, and Alexander Zagorski. Thermal Spraying for Power Generation Components. Wiley-VCH, 2007.

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47

Advanced Power Generation Systems: Thermal Sources. CRC Press LLC, 2022.

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48

Shah, Yatish T. Advanced Power Generation Systems: Thermal Sources. Taylor & Francis Group, 2022.

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49

Schneider, Klaus Erich, Vladimir Belashchenko, Marian Dratwinski, Stephan Siegmann, and Alexander Zagorski. Thermal Spraying for Power Generation Components. Wiley & Sons, Incorporated, John, 2006.

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50

Shah, Yatish T. Advanced Power Generation Systems: Thermal Sources. Taylor & Francis Group, 2022.

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