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Encompassing both practical applications and recent research
developments, this book takes the reader from fundamental physics,
through cutting-edge new designs of ejectors for refrigeration. The
authors' unique vision marries successful design, system
optimization, and operation experience with insights on the
application of cutting-edge Computational Fluid Dynamics (CFD)
models. This robust treatment leads the way forward in developing
improved ejector technologies. The book covers ejectors used for
heat powered refrigeration and for expansion work recovery in
compression refrigerators, with special emphasis on two-phase flows
of "natural" fluids within the ejector, i.e. steam and carbon
dioxide. It features worked examples, detailed research results,
and analysis tools.
Encompassing both practical applications and recent research
developments, this book takes the reader from fundamental physics,
through cutting-edge new designs of ejectors for refrigeration. The
authors' unique vision marries successful design, system
optimization, and operation experience with insights on the
application of cutting-edge Computational Fluid Dynamics (CFD)
models. This robust treatment leads the way forward in developing
improved ejector technologies. The book covers ejectors used for
heat powered refrigeration and for expansion work recovery in
compression refrigerators, with special emphasis on two-phase flows
of "natural" fluids within the ejector, i.e. steam and carbon
dioxide. It features worked examples, detailed research results,
and analysis tools.
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