Books on the topic 'Combined power plant'

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1

Zheng, J. Combined pinch and exergy analysis for commercial power plant design. Manchester: UMIST, 1996.

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2

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

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3

Ltd, Northern Electric Generation. Avonmouth combined heat and power plant and waste gas treatment facility: Environmental statement. Newcastle upon Tyne: PB Power, 2000.

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4

Commission, California Energy. GWF Tracy Combined Cycle Power Plant Project: Application for certification (08-AFC-07), San Joaquin County : final commission decision. Sacramento, CA]: California Energy Commission, 2010.

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5

Dunleavy, Padraig. Condition monitoring in a gas-fired combined cycle generating station. Dublin: University College Dublin, 1996.

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6

U.S. Nuclear Regulatory Commission. Office of New Reactors. Division of New Reactor Licensing. Environmental impact statement for combined licenses (COLs) for Turkey Point Nuclear Plant Units 6 and 7: Draft report for comment. Washington, DC: U.S. Nuclear Regulatory Commission, 2015.

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7

Fluidised Bed Combustion Combined Cycle Steering Committee. Prospects for the use of advanced coal based power generation plant in the United Kingdom: A report prepared under the aegis of ACORD by the Fluidised Bed Combustion Combined Cycle and Gasification Combined Cycle Steering Committees. London: H.M.S.O., 1988.

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8

R, Penfield Scott, and American Society of Mechanical Engineers. Nuclear Energy Division., eds. Excellent and economic nuclear plant performance: Presented at the Combined ANS Power Division Topical Meeting and ASME Nuclear Energy Conference, Newport, Rhode Island, September 16-19, 1990. New York, N.Y: American Society of Mechanical Engineers, 1990.

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9

Skobelski, Robert. Z prądem i pod prąd: Historia zielonogórskiej Elektrociepłowni = With and against the flow : the history of the combined heat and power plant in Zielona Góra. Zielona Góra: Oficyna Wydawnicza Uniwersytetu Zielonogórskiego, 2011.

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10

Combined power plants: Including combined cycle gas turbine (CCGT) plants. Oxford [England]: Pergamon Press, 1992.

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11

Kehlhofer, Rolf. Combined-cycle gas & steam turbine power plants. Lilburn, GA: Fairmont Press, 1991.

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12

Marecki, J. Combined heat & power generating systems. Stevenage: Peregrinus on behalf of the Institution of Electrical Engineers, 1988.

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13

Boyce, Meherwan P. Handbook for cogeneration and combined cycle power plants. 2nd ed. New York: ASME Preww, 2010.

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14

Combined cycle systems for near-zero emission power generation. Oxford, UK: Woodhead Pub., 2012.

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15

Abbi, Y. P. Energy audit: Thermal power, combined cycle, and cogeneration plants. New Delhi: The Energy and Resources Institute, 2012.

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16

Zohuri, Bahman. Combined Cycle Driven Efficiency for Next Generation Nuclear Power Plants. Cham: Springer International Publishing, 2015. http://dx.doi.org/10.1007/978-3-319-15560-9.

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17

Zohuri, Bahman, and Patrick McDaniel. Combined Cycle Driven Efficiency for Next Generation Nuclear Power Plants. Cham: Springer International Publishing, 2018. http://dx.doi.org/10.1007/978-3-319-70551-4.

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18

Bartnik, Ryszard. Conversion of coal-fired power plants to cogeneration and combined-cycle: Thermal and economic effectiveness. London: Springer Verlag, 2011.

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19

Bartnik, Ryszard, and Zbigniew Buryn. Conversion of Coal-Fired Power Plants to Cogeneration and Combined-Cycle. London: Springer London, 2011. http://dx.doi.org/10.1007/978-0-85729-856-0.

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20

Moore, Edwin A. Prospects for gas-fueled combined-cycle power generation in the developing countries. Washington, D.C. (1818 H St. N.W., Washington 20433): World Bank Industry and Energy Dept., PRE, 1991.

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21

Commission, California Energy. Lodi Energy Center: Application for certification (08-AFC-10), San Joaquin County : final commission decision. Sacramento, CA: California Energy Commission, 2010.

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22

Lakatos, Daniel A. Advanced power systems using bituminous coal. Hauppauge, N.Y: Nova Science Publishers, 2011.

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23

Kulkarni, Pramod. Combined heat and power potential at California's wastewater treatment plants: Draft staff paper. Sacramento, Calif.]: California Energy Commission, 2009.

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24

Patty, Sandra S. Environmental review of the proposed combined cycle facility at Mirant's Dickerson site. Annapolis, Md: Maryland Power Plant Research Program, 2005.

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25

online, Woodhead publishing, ed. Generating power at high efficiency: Combined-cycle technology for sustainable energy production. Cambridge, England: Woodhead Pub., 2008.

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26

U.S. Nuclear Regulatory Commission. Office of New Reactors. Environmental impact statement for the combined license (COL) for Enrico Fermi Unit 3: Final report. Washington, DC: U.S. Nuclear Regulatory Commission, 2013.

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27

Combined heating, cooling & power handbook: Technologies & applications an integrated approach to energy resource optimization. 2nd ed. Lilburn, GA: The Fairmont Press, 2012.

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28

Mann, Margaret K. Life cycle assessment of a biomass gasification combined-cycle power system. Golden, CO (1617 Cole Blvd., Golden 880401-3393): National Renewal Energy Laboratory, [1999], 1997.

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29

Zohuri, Bahman. Application of Compact Heat Exchangers For Combined Cycle Driven Efficiency In Next Generation Nuclear Power Plants. Cham: Springer International Publishing, 2016. http://dx.doi.org/10.1007/978-3-319-23537-0.

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30

U.S. Nuclear Regulatory Commission. Division of Site and Environmental Reviews. Supplemental environmental impact statement for the combined license (COL) for North Anna Power Station Unit 3: Final report. Washington, DC: United States Nuclear Regulatory Commission, 2010.

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31

International Joint Power Generation Conference (1990 Boston, Mass.). Cogeneration and combined cycle plants--design, interconnection, and turbine applications: Presented at the 1990 International Joint Power Generation Conference, Boston, Massachusetts, October 21-25, 1990. New York, N.Y: American Society of Mechanical Engineers, 1990.

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32

Zavaglia, David. Le livre noir du nucléaire: Combien de catastrophes encore ... ? Vanves: Qidesign, 2011.

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33

Craig, Kevin R. Cost and performance analysis of biomass-based integrated gasification combined-cycle (BIGCC) power systems. Golden, CO: National Renewable Energy Laboratory, 1996.

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34

Burkov, Aleksey, and Viktor Mihanoshin. Rowing electric installations: overview, analysis, development prospects. ru: INFRA-M Academic Publishing LLC., 2022. http://dx.doi.org/10.12737/1832490.

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The monograph provides an overview and analysis of ship's rowing electrical installations, modern scientific and technical solutions aimed at improving the theory and practice of electrical systems of ship propulsion systems are considered. Solutions of urgent problems related to the development of rowing electric installations of small-tonnage vessels based on the introduction of combined power plants, including electrochemical sources of electricity (batteries), are proposed. It is intended for scientific and educational purposes and is aimed at specialists in the field of ship power engineering, cadets and students of electromechanical specialties of educational institutions.
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35

International Symposium on Turbomachinery, combined-Cycle Technologies and Cogeneration 1988 Montreux, Switzerland. 1988 ASME COGEN-TURBO: 2nd International Symposium on Turbomachinery, Combined-Cycle Technologies, and Cogeneration, held in Montreux, Switzerland, August 30-September 1, 1988. New York, N.Y: American Society of Mechanical Engineers, 1988.

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36

K, Serovy G., Fransson T, Farbi J, and ASME International Gas Turbine Institute., eds. 1989 ASME COGEN-TURBO: 3rd International Symposium on Turbomachinery, Combined-Cycle Technologies, and Cogeneration, held in Nice, France, August 30-September 1, 1989. New York, N.Y. (345 E. 47th St., New York 10017): American Society of Mechanical Engineers, 1989.

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37

Stewart, William E. Design guide: Combustion turbine inlet air cooling systems. Atlanta, Ga: American Society of Heating, Refrigerating and Air-Conditioning Engineers, 1999.

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38

Sherstnev, Nikolay. Maintenance and repair of ship boilers. ru: INFRA-M Academic Publishing LLC., 2021. http://dx.doi.org/10.12737/1225048.

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The textbook shows the features of the layout and designs of ship auxiliary, recycling and combined boilers that affect their working conditions and methods of maintenance and repair. Recommendations for external inspection of boilers, control and maintenance in action are given. With examples from ship practice, the main methods of cleaning, defecation and repair of heating surfaces and other parts of various types of boilers are considered. It is intended for students of higher educational institutions studying in the specialty "Operation of marine power plants" and university teachers. It can also be useful for ship mechanics.
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39

1950-, Cipriano Aldo, and Ordys A. W. 1956-, eds. Optimisation of industrial processes at supervisory level: Application to control of thermal power plants. London: Springer, 2002.

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40

McGovern, Denise. Final safety evaluation report for combined licenses for Virgil C. Summer Nuclear Station, units 2 and 3: Docket nos. 52-027 and 52-028. Washington, DC: U.S. Nuclear Regulatory Commission, Office of New Reactors, 2013.

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41

Zuev, Sergey, Ruslan Maleev, and Aleksandr Chernov. Energy efficiency of electrical equipment systems of autonomous objects. ru: INFRA-M Academic Publishing LLC., 2021. http://dx.doi.org/10.12737/1740252.

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When considering the main trends in the development of modern autonomous objects (aircraft, combat vehicles, motor vehicles, floating vehicles, agricultural machines, etc.) in recent decades, two key areas can be identified. The first direction is associated with the improvement of traditional designs of autonomous objects (AO) with an internal combustion engine (ICE) or a gas turbine engine (GTD). The second direction is connected with the creation of new types of joint-stock companies, namely electric joint-stock companies( EAO), joint-stock companies with combined power plants (AOKEU). The energy efficiency is largely determined by the power of the generator set and the battery, which is given to the electrical network in various driving modes. Most of the existing methods for calculating power supply systems use the average values of disturbing factors (generator speed, current of electric energy consumers, voltage in the on-board network) when choosing the characteristics of the generator set and the battery. At the same time, it is obvious that when operating a motor vehicle, these parameters change depending on the driving mode. Modern methods of selecting the main parameters and characteristics of the power supply system do not provide for modeling its interaction with the power unit start-up system of a motor vehicle in operation due to the lack of a systematic approach. The choice of a generator set and a battery, as well as the concept of the synthesis of the power supply system is a problem studied in the monograph. For all those interested in electrical engineering and electronics.
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42

(Firm), ALTA Estate Services, ed. Combined heat and power plant. Birmingham: ALTA Estate Services, 1993.

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43

Thermoeconomic Analysis of a Gasificatin Combined Cycle Power Plant. Electric Power Res Inst, 1987.

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44

Surface Water Modelling Centre (Bangladesh), Dansk hydraulisk institut, and Hyundai Engineering & Construction Company (Bangladesh), eds. Hydraulic model study: AES Meghnaghat 450 MW combined cycle power plant : final report. Dhaka: Surface Water Modelling Centre, 2001.

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45

Brawn, Robert Charles. Off-design analysis and control of a wood-fired combined-cycle power plant. 1985.

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46

Brawn, Robert Charles. Off-design analysis and control of a wood-fired combined-cycle power plant. 1985.

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47

Ranasinghe, Jatila. Analysis of ceramic heat exchangers for use in a combined-cycle, wood-fired power plant. 1986.

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48

Stephenson, Jerry D. Analysis of a wood-fueled trimburner system for use in a combined-cycle, wood-fired power plant. 1985.

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49

Stephenson, Jerry D. Analysis of a wood-fueled trimburner system for use in a combined-cycle, wood-fired power plant. 1985.

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50

U.S. Nuclear Regulatory Commission. Division of New Reactor Licensing. Environmental impact statement for the combined license (COL) for the Bell Bend Nuclear Power Plant: Draft report for comment. 2015.

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