_Advanced Power Generation Systems_ examines the full range of
advanced multiple output thermodynamic cycles that can enable more
sustainable and efficient power production from traditional methods,
as well as driving the significant gains available from renewable
sources. These advanced cycles can harness the by-products of one
power generation effort, such as electricity production, to
simultaneously create additional energy outputs, such as heat or
refrigeration. Gas turbine-based, and industrial waste heat
recovery-based combined, cogeneration, and trigeneration cycles are
considered in depth, along with Syngas combustion engines, hybrid
SOFC/gas turbine engines, and other thermodynamically efficient and
environmentally conscious generation technologies. The uses of solar
power, biomass, hydrogen, and fuel cells in advanced power generation
are considered, within both hybrid and dedicated systems.
The detailed energy and exergy analysis of each type of system
provided by globally recognized author Dr. Ibrahim Dincer will inform
effective and efficient design choices, while emphasizing the pivotal
role of new methodologies and models for performance assessment of
existing systems. This unique resource gathers information from
thermodynamics, fluid mechanics, heat transfer, and energy system
design to provide a single-source guide to solving practical power
engineering problems.
* The only complete source of info on the whole array of multiple
output thermodynamic cycles, covering all the design options for
environmentally-conscious combined production of electric power, heat,
and refrigeration
* Offers crucial instruction on realizing more efficiency in
traditional power generation systems, and on implementing renewable
technologies, including solar, hydrogen, fuel cells, and biomass
* Each cycle description clarified through schematic diagrams, and
linked to sustainable development scenarios through detailed energy,
exergy, and efficiency analyses
* Case studies and examples demonstrate how novel systems and
performance assessment methods function in practice
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Produktdetaljer
ISBN
9780123838605
Publisert
2014
Utgiver
Vendor
Elsevier Science Publishing Co Inc
Språk
Product language
Engelsk
Format
Product format
Innbundet
Antall sider
656
Forfatter