Drop-in replacement in a R134 ejector refrigeration cycle by HFO refrigerants
•Numerical analysis of a supersonic single-phase ejector.•Thermodynamical study of a Heat Driven Ejector Refrigeration cycle.•Performance evaluation of three refrigerants including two HFOs.•Low-GWP R134a alternatives for drop-in replacement. The present work reports a numerical analysis of a single...
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| Vydáno v: | International journal of refrigeration Ročník 77; s. 87 - 98 |
|---|---|
| Hlavní autoři: | , , , , |
| Médium: | Journal Article |
| Jazyk: | angličtina |
| Vydáno: |
Paris
Elsevier Ltd
01.05.2017
Elsevier Science Ltd |
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| ISSN: | 0140-7007, 1879-2081 |
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| Abstract | •Numerical analysis of a supersonic single-phase ejector.•Thermodynamical study of a Heat Driven Ejector Refrigeration cycle.•Performance evaluation of three refrigerants including two HFOs.•Low-GWP R134a alternatives for drop-in replacement.
The present work reports a numerical analysis of a single-phase supersonic ejector working with R134a as well as hydrofluoroolefin (HFO) refrigerants R1234yf and R1234ze(E). Comparisons were made regarding the ejector performances under varying operating conditions and refrigerant mixture proportions. The calculations have been then extended to an existing ejector heat driven refrigeration cycle (EHDRC). R1234yf appears to be a good candidate for drop-in replacement of R134a in a real EHDRC, while using R1234ze(E) would induce some modifications due to its thermodynamic properties. Maintaining the same pressure ratio for the ejector would lead on one hand to better entrainment ratio using R1234ze(E) and on the other hand to reduced coefficient of performance (COP) and cooling power by 4.2% and 26.6% in average, respectively. Using R1234yf under the same conditions induces a decrease of 5.2% for the entrainment ratio, 9.6% for the COP and 19.8% for the cooling power in average. |
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| AbstractList | •Numerical analysis of a supersonic single-phase ejector.•Thermodynamical study of a Heat Driven Ejector Refrigeration cycle.•Performance evaluation of three refrigerants including two HFOs.•Low-GWP R134a alternatives for drop-in replacement.
The present work reports a numerical analysis of a single-phase supersonic ejector working with R134a as well as hydrofluoroolefin (HFO) refrigerants R1234yf and R1234ze(E). Comparisons were made regarding the ejector performances under varying operating conditions and refrigerant mixture proportions. The calculations have been then extended to an existing ejector heat driven refrigeration cycle (EHDRC). R1234yf appears to be a good candidate for drop-in replacement of R134a in a real EHDRC, while using R1234ze(E) would induce some modifications due to its thermodynamic properties. Maintaining the same pressure ratio for the ejector would lead on one hand to better entrainment ratio using R1234ze(E) and on the other hand to reduced coefficient of performance (COP) and cooling power by 4.2% and 26.6% in average, respectively. Using R1234yf under the same conditions induces a decrease of 5.2% for the entrainment ratio, 9.6% for the COP and 19.8% for the cooling power in average. The present work reports a numerical analysis of a single-phase supersonic ejector working with R134a as well as hydrofluoroolefin (HFO) refrigerants R1234yf and R1234ze(E). Comparisons were made regarding the ejector performances under varying operating conditions and refrigerant mixture proportions. The calculations have been then extended to an existing ejector heat driven refrigeration cycle (EHDRC). R1234yf appears to be a good candidate for drop-in replacement of R134a in a real EHDRC, while using R1234ze(E) would induce some modifications due to its thermodynamic properties. Maintaining the same pressure ratio for the ejector would lead on one hand to better entrainment ratio using R1234ze(E) and on the other hand to reduced coefficient of performance (COP) and cooling power by 4.2% and 26.6% in average, respectively. Using R1234yf under the same conditions induces a decrease of 5.2% for the entrainment ratio, 9.6% for the COP and 19.8% for the cooling power in average. |
| Author | Aidoun, Zine Poncet, Sébastien Bartosiewicz, Yann Fang, Yu Croquer, Sergio |
| Author_xml | – sequence: 1 givenname: Yu orcidid: 0000-0002-7872-3271 surname: Fang fullname: Fang, Yu organization: Département de génie mécanique, Faculté de génie, Université de Sherbrooke, 2500 Boulevard de l'Université, Sherbrooke, QC J1K 2R1, Canada – sequence: 2 givenname: Sergio surname: Croquer fullname: Croquer, Sergio organization: Département de génie mécanique, Faculté de génie, Université de Sherbrooke, 2500 Boulevard de l'Université, Sherbrooke, QC J1K 2R1, Canada – sequence: 3 givenname: Sébastien orcidid: 0000-0001-7795-6092 surname: Poncet fullname: Poncet, Sébastien email: sebastien.poncet@usherbrooke.ca organization: Département de génie mécanique, Faculté de génie, Université de Sherbrooke, 2500 Boulevard de l'Université, Sherbrooke, QC J1K 2R1, Canada – sequence: 4 givenname: Zine surname: Aidoun fullname: Aidoun, Zine organization: CanmetEnergy, Natural Resources Canada, 1615 Boulevard Lionel-Boulet, Varennes, QC J3X 1S6, Canada – sequence: 5 givenname: Yann surname: Bartosiewicz fullname: Bartosiewicz, Yann organization: Institute of Mechanics, Materials and Civil Engineering (IMMC), Université Catholique de Louvain, Place du Levant 2, B-1348 Louvain-la-Neuve, Belgium |
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| DocumentTitleAlternate | Remplacement immédiat du R134 par des fluides frigorigènes HFO dans un cycle frigorifique à éjecteur |
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| Keywords | HFO refrigerants Numerical modeling Refrigeration cycle Cycle frigorifique Modélisation thermodynamique Fluides frigorigènes HFO Éjecteur monophasique Thermodynamic modeling Modélisation numérique R134a Single-phase ejector |
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| Snippet | •Numerical analysis of a supersonic single-phase ejector.•Thermodynamical study of a Heat Driven Ejector Refrigeration cycle.•Performance evaluation of three... The present work reports a numerical analysis of a single-phase supersonic ejector working with R134a as well as hydrofluoroolefin (HFO) refrigerants R1234yf... |
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| SubjectTerms | Cooling Cycle frigorifique Ejection Entrainment Fluides frigorigènes HFO HFO refrigerants Modélisation numérique Modélisation thermodynamique Numerical analysis Numerical modeling Pressure ratio R134a Refrigerants Refrigeration Refrigeration cycle Single-phase ejector Thermodynamic modeling Thermodynamic properties Thermodynamics Éjecteur monophasique |
| Title | Drop-in replacement in a R134 ejector refrigeration cycle by HFO refrigerants |
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