Vapour compression heat pumps with refrigerant mixtures.
Author(s) : RADERMACHER R., HWANG Y.
Type of monograph: Book
Summary
This book provides a comprehensive background and thorough discussion of the thermodynamics of working fluid mixtures and their applications. It covers the fundamentals of various refrigeration cycles, as well as a basic background of the thermodynamics related to these mixtures. It also provides important data on heat transfer and pressure drop correlations, as well as critical operational issues related to refrigerant mixtures. Extract from the table of contents: properties of working fluids; vapour compression cycle fundamentals (Carnot cycle; Lorenz cycle; vapour compression with zeotropic mixtures in thermodynamic diagrams; temperature glides; simulation); methods for improving the cycle efficiency; experimental performance measurements; refrigerant mixtures in refrigeration applications; refrigerant mixtures in heat pump applications; heat transfer of refrigerant mixtures; operational issues (regulation; refrigerant recovery, mixing, mass fraction measurement; evacuating a system; refrigerant charge; leak checking).
Details
- Original title: Vapour compression heat pumps with refrigerant mixtures.
- Record ID : 2005-2908
- Languages: English
- Subject: Regulation
- Publication: Taylor & Francis, CRC Press - United states/United states
- Publication date: 2005/04
- ISBN: 0849334896
- Source: Source: 320 p. (16 x 24); fig.; phot.; tabl.; ref.; index; EUR 68.99.
- Document available for consultation in the library of the IIR headquarters only.
Indexing
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Themes:
Heat pumps techniques;
Thermodynamics and changes of state;
Residential heat-pumps;
Commercial heat pumps;
Mass transfer;
Industrial heat pumps;
Blends;
Containment, refrigerant charge reduction;
Refrigerants, secondary refrigerants: regulations and standards - Keywords: Regulations; Industrial application; Heat transfer coefficient; Commercial building; Measurement; Heat transfer; Diagram; Efficiency; Thermodynamic property; Compression system; Simulation; Heat pump; Performance; Ternary mixture; Mixture; Residential building; Guide; Testing; Thermodynamic cycle; Leakage; Refrigerant; Air conditioning; Pressure drop
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