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This book offers a comprehensive introduction to novel absorption
heating technologies for improving the energy efficiency of heating
systems. The proposed low-temperature heating systems, based on an
air source absorption heat pump (ASAHP), significantly increase
heating efficiency and reduce pollution emissions. As the
performance of ASAHPs deteriorates at lower ambient/driving
temperatures, a series of advanced cycles is used to extend their
applicability, with the compression-assisted ASAHP being the most
outstanding example. The book discusses the
generator-absorber-heat-exchange ASAHP as a promising solution to
make the best of high driving temperatures, an aspect that can be
improved further via compression. Further, it addresses the ground
source absorption heat pump (GSAHP), which eliminates the soil
thermal imbalance of the conventional ground source electrical heat
pump (GSEHP), and also reduces the number of boreholes . Various
hybrid GSAHP systems are proposed to further enhance applicability,
efficiency, and economy: these include a combined GSAHP and GSEHP
system, as well as ASAHP and GSAHP systems that incorporate design
optimizations. In closing, the book explores the merits of novel
working fluids and highlights recent advances concerning waste heat
and renewable energy utilization.
This book offers a comprehensive introduction to novel absorption
heating technologies for improving the energy efficiency of heating
systems. The proposed low-temperature heating systems, based on an
air source absorption heat pump (ASAHP), significantly increase
heating efficiency and reduce pollution emissions. As the
performance of ASAHPs deteriorates at lower ambient/driving
temperatures, a series of advanced cycles is used to extend their
applicability, with the compression-assisted ASAHP being the most
outstanding example. The book discusses the
generator-absorber-heat-exchange ASAHP as a promising solution to
make the best of high driving temperatures, an aspect that can be
improved further via compression. Further, it addresses the ground
source absorption heat pump (GSAHP), which eliminates the soil
thermal imbalance of the conventional ground source electrical heat
pump (GSEHP), and also reduces the number of boreholes . Various
hybrid GSAHP systems are proposed to further enhance applicability,
efficiency, and economy: these include a combined GSAHP and GSEHP
system, as well as ASAHP and GSAHP systems that incorporate design
optimizations. In closing, the book explores the merits of novel
working fluids and highlights recent advances concerning waste heat
and renewable energy utilization.
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