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    Sensitivity Analysis of Factors Effecting the Financial Viability of Cogeneration Projects 

    Clunie, J. F. (Energy Systems Laboratory (http://esl.tamu.edu)Texas A&M University (http://www.tamu.edu), 1984)
    Cogeneration represents an alternative available for industry to take advantage of energy conservation through simultaneous generation of thermal energy and electricity. A positive regulatory climate can further contribute ...

    Cogeneration/Cogeneration - Solid Waste 

    Pyle, F. B. (Energy Systems Laboratory (http://esl.tamu.edu)Texas A&M University (http://www.tamu.edu), 1980)
    This paper reviews the rationale for cogeneration and basic turbine types available. Special considerations for cogeneration in conjunction with solid waste firing are outlined. Optimum throttle conditions for cogeneration ...

    Cogeneration Economics 

    Mongon, A. (Energy Systems Laboratory (http://esl.tamu.edu)Texas A&M University (http://www.tamu.edu), 1984)
    Cogeneration of heat power is today receiving more attention by energy economists and policy makers - The enormous escalation of energy prices over the last decade has made energy efficiency an important economic factor ...

    Cogeneration with Thermionics and Electrochemical Cells 

    Miskolczy, G.; Goodale, D.; Huffman, F.; Morgan, D. (Energy Systems Laboratory (http://esl.tamu.edu)Texas A&M University (http://www.tamu.edu), 1984)
    Thermionic energy converters convert high-temperature heat into high-current low-voltage direct current, rejecting heat at a temperature that is high enough to generate process steam. Electrochemical cells are high-current ...

    The Utilities' Role in Conservation and Cogeneration 

    Mitchell, R. C., III (Energy Systems Laboratory (http://esl.tamu.edu)Texas A&M University (http://www.tamu.edu), 1982)
    The electric utility industry is uniquely qualified and positioned to serve as an effective 'deliverer' of energy conservation services and alternative energy supply options, such as cogeneration, rather than merely as a ...

    New 90,000 PPH Coal Fired Boiler Plant at Liggett & Myers Tobacco Company, Durham North Carolina 

    Kaskey, G. T. (Energy Systems Laboratory (http://esl.tamu.edu)Texas A&M University (http://www.tamu.edu), 1984)
    Liggett & Myers Tobacco Company in Durham, North Carolina is installing a future cogeneration, coal fired boiler system designed and built by Energy Systems (ESI) of Chattanooga, Tennessee. The complete boiler plant is ...

    New Technology and Energy Alternatives 

    Lamphere, F. J. (Energy Systems Laboratory (http://esl.tamu.edu), 1986-06)
    This paper discusses cogeneration, peak shaving, interruptible power and "on-site" generation as alternatives to purchasing traditional electrical power. Equipment used and case histories, including economics of the ...

    Industrial - Utility Cogeneration Systems 

    Harkins, H. L. (Energy Systems Laboratory (http://esl.tamu.edu), 1979)
    Cogeneration may be described as an efficient method for the production of electric power in conjunction with process steam or heat which optimizes the energy supplied as fuel to maximize the energy produced for consumption. ...

    Energy Conservation and Cogeneration in Bottom-of-the-Barrel Processes 

    Fleming, J. B.; Chang, C. P.; Pierce, V. E. (Energy Systems Laboratory (http://esl.tamu.edu)Texas A&M University (http://www.tamu.edu), 1982)
    Due to the increased use of coal and the reduced demand for Bunker C and other heavy liquid fuels, more refiners are adding or increasing the capacity of their facilities for converting the bottom-of-the-barrel streams ...

    An Energy Self-Sufficient Sawmill 

    Juchymenko, A. (Energy Systems Laboratory (http://esl.tamu.edu)Texas A&M University (http://www.tamu.edu), 1982)
    This paper investigates the feasibility of converting sawmill wood by-products (biomass) into useful and marketable energy forms such as low pressure steam and electricity. It is based on the principle of energy cascading, ...
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    AuthorGilbert, J. S. (3)Ahner, D. J. (2)Harkins, H. L. (2)Limaye, D. R. (2)Polsky, M. P. (2)Viar, W. L. (2)Birget, C. D. (1)Bollinger, J. M. (1)Bray, M. E. (1)Burns, E. D. (1)... View MoreSubject
    Cogeneration (61)
    Economic Analysis (8)Economics (4)Technology (4)Feasibility Study (3)Waste Heat Recovery (3)Distillation (2)Electric Utility Industry (2)Fluidized Bed Combustion (2)Pinch Technology (2)... View MoreDate Issued1990 - 1995 (2)1980 - 1989 (55)1979 - 1979 (4)Has File(s)
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