Summary
A thermodynamic analysis was carried out to study the effect of design parameters on the performance of double-effect absorption chiller of series flow type using water-lithium bromide. The optimum design and operating conditions of double-effect absorption chiller are suggested based on this cycle simulation analysis.
Details
- Original title: Theoretical analysis and optimization of a double-effect series flow type absorption chiller.
- Record ID : 1998-0248
- Languages: English
- Source: Heat pumping technologies towards the next century: applications and markets. Proceedings of the 5th IEA Conference.
- Publication date: 1996/09/22
- Document available for consultation in the library of the IIR headquarters only.
Links
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Indexing
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Study on optimum design method of absorption re...
- Author(s) : JEONG J., SAITO K., KAWAI S.
- Date : 2007/08/21
- Languages : English
- Source: ICR 2007. Refrigeration Creates the Future. Proceedings of the 22nd IIR International Congress of Refrigeration.
- Formats : PDF
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Dynamic simulation of a double-effect parallel-...
- Author(s) : LIN P., WANG R. Z., WU J. Y.
- Date : 2008/04/05
- Languages : English
- Source: Cryogenics and refrigeration. Proceedings of ICCR'2008.
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Simulation of a double-effect vapour recompress...
- Author(s) : LUDOVISI D., WOREK W. M., MECKLER M.
- Date : 2001/09/15
- Languages : English
- Source: CLIMA 2000. 7th REHVA World Congress, Naples 2001 [CD-ROM + Hard-copy abstracts].
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An experimental study on the performance of a t...
- Author(s) : MA W. B., DENG S. M.
- 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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Intermediate pressure optimum mathematical calc...
- Author(s) : HE J., WANG D., YAN L.
- Date : 2003/04/22
- Languages : English
- Source: Cryogenics and refrigeration. Proceedings of ICCR 2003.
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