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Exergy analysis of operation of two-phase ejector in compression refrigeration systems

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Paper deals with theoretical analysis of possible efficiency increase of compression refrigeration cycles by means of application of a two-phase ejector. Application of the two phase ejector in subcritical refrigeration system as a booster compressor is discussed in the paper. Results of exergy analysis of the system operating with various working fluids for various operating conditions have been shown. Analysis showed possible exergy efficiency increase of refrigeration compression cycle.
Rocznik
Strony
107--122
Opis fizyczny
Bibliogr. 19 poz., il.
Twórcy
autor
  • Bialystok University of Technology, Faculty of Mechanical Engineering, Wiejska 45c, 15-351 Białystok, Poland
  • Bialystok University of Technology, Faculty of Mechanical Engineering, Wiejska 45c, 15-351 Białystok, Poland
  • The Szewalski Institute of Fluid-Flow Machinery of Polish Academy of Sciences, Fiszera 14, 80-231 Gdańsk, Poland
  • The Szewalski Institute of Fluid-Flow Machinery of Polish Academy of Sciences, Fiszera 14, 80-231 Gdańsk, Poland
autor
  • The Szewalski Institute of Fluid-Flow Machinery of Polish Academy of Sciences, Fiszera 14, 80-231 Gdańsk, Poland
Bibliografia
  • [1] DOMANSKI P.: Theoretical Evaluation of the Vapor Compression Cycle with a Liquid-Line/Suction-Line Heat Exchanger. Economizer, and Ejector, NISTIR 5606 1995.
  • [2] HARRELL G., KORNHAUSER A.: Performance tests of a two phase ejector. In: Proc. 30th Intersociety Energy Conversion Engineering Conf. (IECEC), Orlando 1995, 49-53.
  • [3] BUTRYMOWICZ, D.: Improvement of compression refrigeration cycle by means of two-phase ejector. In: Proc. 21st Int. Cong. Refrigeration, Washington B.C. 2003, Paper No. ICR0310.
  • [4] BUTRYMOWICZ D.: Problems of improvement of efficiencies of refrigeration cycles. Bull. IFFM PASci, no 538/1497/2005, Gdansk 2005 (in Polish).
  • [5] BUTRYMOWICZ D., SMIERCIEW K., REGULSKA D., KARWACKI J., TRELA M.: Experimental investigation of effect of motive nozzle diameter on performance of liquid-vapour ejector. Int. Sem. Ejector/Jet-Pump Technology And Application, Louvain-La-Neuve 2009, Paper No. 24.
  • [6] DUDAR A., BUTRYMOWICZ D.: Estimation of operation parameters in two-phase ejector in compressor systems with isobutane. In: Proc. 39th Nat. Conf. Investigations, Design, Operation of Cooling and Air-Conditioner Systems and Applied Refrigerants, Poznań 2007, 77-91 (in Polish).
  • [7] DUDAR A., BUTRYMOWICZ D.: Operation of two-phase ejector in compressor hydrocarbon cooling system. Power in Science and Technology, VII National Conference on Science and Applications, Bialystok-Suwalki 2008, 632-643 (in Polish).
  • [8] Li D., GROLL E.A.: Transcritical CO2 refrigeration cycle with ejector-expansion device. Int. J. Refrig. 28(2005), 766-773.
  • [9] Liu F., GROLL E.A.: Analysis of a two phase flow ejector for the transcritical CO2 cycle. In: Proc. Int. Refrigeration and Air Conditioning Conf. Purdue 2008, Paper No. 2131.
  • [10] ELBEL S., HRNJAK P.: Effect of internal heat exchanger on performance of transcritical CO2 systems with ejector. In: Proc. Int. Refrigeration and Air Conditioning Conference at Purdue, 2004, Paper No. R166.
  • [11] ELBEL S., HRNJAK P.: Experimental validation and design study of a transcritical CO2 prototype ejector system. In: Proc. 7th IIR Gustav Lorentzen Conf. Natural Working Fluids, Trondheim 2006, Paper No. 149.
  • [12] ELBEL S., HRNJAK P.: Experimental validation of a prototype ejector designed to reduce throttling losses encountered in transcritical R744 system operation. Int. J, Refrig. 31(2008), 411-422.
  • [13] DENG J.Q., JIANG P.-X., LU T., LU W.: Particular characteristics of transcribed CO2 refrigeration cycle with an ejector. Appl. Therm. Eng. 27(2007), 381-388.
  • [14] DISAWAS S., WONGWISES S.: Experimental investigation on the performance of the refrigeration cycle using a two-phase ejector as an expansion device. Int. J. Refrig, 27(2004), 587-594.
  • [15] ANGIELCZYK W., BARTOSIEWICZ Y., BUTYRMOWICZ D., SEYNHAEVE J.-M.: 1-D Modeling of supersonic carbon dioxide two-phase flow through ejector motive nozzle In: Proc. Int. Refrigeration and Air Conditioning Conf., Purdue 2010, Paper No, 1102.
  • [16] BANASIAK K., HAFNER A.: ID Computational model of a two-phase R744 ejector for expansion work recovery. Int. J. Therm. Scie. 50(2011), 2235-2247.
  • [17] DUDAR A.: Investigation of reducing of throttling losses in hydrocarbons compression refrigeration devices operating with two-phase ejector. PhD thesis, Technical Uni. Bialystok, Bialystok 2010 (in Polish).
  • [18] BUTRYMOWICZ D., MIKIELEWICZ J., TRELA M.: Analysis of possibilities to reduce thermodynamic imperfections in refrigeration cycles. In: Analysis of Possibilities to Reduce Thermodynamic Imperfections in Processes of Generation of Electricity, Heat and Cold in Aspects of Sustainable Development of the Country, Ziębik A., Szargut J., Stanek W. (Eds.), Polish Academy of Sciences, Warsaw 2006, 183-245.
  • [19] REFPROP Reference Fluid Thermodynamics and Transport Properties, version 9. Lemmon E.W., McLinden M.O., Huber M.L., Physical and Chemical Properties Division, National Institute of Standards and Technology, Boulder 2010.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-da7fd217-4342-4fcf-bff7-1529cbf90810
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