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Although conventional cogeneration systems have been used
successfully in the last two decades, most of them have been large
units using mainly hydrocarbon fuels that are becoming increasingly
expensive. New cogeneration systems based on fuel cells and
sorption air conditioning systems promise to be an energy-saving
alternative for situations when cooling, heating and power are
needed at low and medium capacities. Cogeneration Fuel
Cell-Sorption Air Conditioning Systems examines the thermodynamic
principles of fuel cell performance and sorption air conditioning
systems, and gives relevant information about the state of the art
of these technologies. It also provides the reader with the
theoretical bases and knowledge needed to understand the operation
of these new cogeneration systems, as well as discussing the design
basis and economical evaluation. Topics covered include: * selected
fuel cells for cogeneration CHP processes; * state-of-the-art
sorption refrigeration systems; * potential applications in
demonstration projects; and * profitability assessment of the
cogeneration system. Air conditioning and fuel cell engineers;
postgraduates and researchers in energy fields; and designers of
cooling, heating and power cogeneration systems will find
Cogeneration Fuel Cell-Sorption Air Conditioning Systems a useful
and informative reference.
Although conventional cogeneration systems have been used
successfully in the last two decades, most of them have been large
units using mainly hydrocarbon fuels that are becoming increasingly
expensive. New cogeneration systems based on fuel cells and
sorption air conditioning systems promise to be an energy-saving
alternative for situations when cooling, heating and power are
needed at low and medium capacities. Cogeneration Fuel
Cell-Sorption Air Conditioning Systems examines the thermodynamic
principles of fuel cell performance and sorption air conditioning
systems, and gives relevant information about the state of the art
of these technologies. It also provides the reader with the
theoretical bases and knowledge needed to understand the operation
of these new cogeneration systems, as well as discussing the design
basis and economical evaluation. Topics covered include: * selected
fuel cells for cogeneration CHP processes; * state-of-the-art
sorption refrigeration systems; * potential applications in
demonstration projects; and * profitability assessment of the
cogeneration system. Air conditioning and fuel cell engineers;
postgraduates and researchers in energy fields; and designers of
cooling, heating and power cogeneration systems will find
Cogeneration Fuel Cell-Sorption Air Conditioning Systems a useful
and informative reference.
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