Experimental testing and modelling of a dual-fired LiBr-H2O absorption chiller.
Author(s) : GEE T. A., CAO J., MATHIAS J. A., et al.
Summary
An LiBr-H2O chiller was modified to utilize heat sources from natural gas combustion and/or from hot fluid. During the experiments, the modified chiller was powered solely by steam, natural gas, or both. There was a significant increase in COP and capacity when steam was used as a heat source.
Details
- Original title: Experimental testing and modelling of a dual-fired LiBr-H2O absorption chiller.
- Record ID : 2003-1273
- Languages: English
- Source: ASHRAE Transactions. 2001 annual Meeting, Cincinnati, Ohio. Volume 107, part 2 + CD-ROM.
- Publication date: 2001/06/24
- Document available for consultation in the library of the IIR headquarters only.
Links
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Indexing
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Development of a direct-fired partly air-cooled...
- Author(s) : SCHWEIGLER C., DANTELE T., KREN C., et al.
- Date : 1999/09/19
- Languages : English
- Source: 20th International Congress of Refrigeration: Refrigeration into the Third Millennium.
- Formats : PDF
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Modelling and optimisation of absorption system...
- Author(s) : MOINARD S., GIVOIS E.
- Date : 1997/08
- Languages : English
- Source: CLIMA 2000, Brussels 1997, August 30 to September 2, Congress Palace.
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The characteristic equations of absorption chil...
- Author(s) : HELLMANN H. M., SCHWEIGLER C., ZIEGLER F.
- Date : 1999/03/24
- Languages : English
- Source: Proceedings of the International Sorption Heat Pump Conference.
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A simple method for modelling the operating cha...
- Author(s) : HELLMANN H. M., SCHWEIGLER C., ZIEGLER F.
- Date : 1998/07/06
- Languages : English
- Source: Thermodynamics, heat and mass transfer of refrigeration machines and heat pumps. Proceedings of the EUROTHERM Seminar 59./ Thermodynamique et transferts de chaleur et de masse dans les machines à froid et pompes à chaleur. Comptes rendus du séminaire EUROTHERM 59.
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Two-stage absorption cycle chiller.
- Author(s) : TAKIGAWA T.
- Date : 1998/10/28
- Languages : English
- Source: Absorption machines for heating and cooling in future energy systems. Workshop proceedings.
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