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An application of conventional and advanced exergy approaches on a R41/R1233ZD(E) cascade refrigeration system under optimum conditions

Year 2022, Volume: 8 Issue: 2, 182 - 201, 11.03.2022
https://doi.org/10.18186/thermal.1080196

Abstract

Painstaking adjustment of an optimum low-temperature cycle (LTC) condenser temperature allows cascade refrigeration system (CRS) to operate at maximum performance. This study exhibits an original approach because, for the first time, advanced exergy analysis is implemented under an optimum LTC condenser temperature of CRS operating with R41/R1233zd(E) as an environmentally-friendly refrigerant pair. Under the auspices of advanced exergy analysis, there is endogenous exergy destruction of 50.43% and exogenous exergy destruction of 49.57% within total exergy destruction. It is pointed out that the interactions between the CRS components (external irreversibilities) are partly less than exergy destruction that occurs within components (internal irreversibilities). The avoidable part within total exergy destruction, which is greater than the unavoidable part, indicates that components have a high improvement potential with a value of 56.31%. Furthermore, LTC compressor depends significantly on other components, as it has the largest exogenous part of exergy destruction with 75.82%. The results indicate that the CRS’s exergy efficiency, which can be determined based on conventional exergy analysis, is only 36%. However, this increases to 68% with the improvements needed for the components.

References

  • The article references can be accessed from the .pdf file.
Year 2022, Volume: 8 Issue: 2, 182 - 201, 11.03.2022
https://doi.org/10.18186/thermal.1080196

Abstract

References

  • The article references can be accessed from the .pdf file.
There are 1 citations in total.

Details

Primary Language English
Subjects Thermodynamics and Statistical Physics
Journal Section Articles
Authors

Cenker Aktemur This is me 0000-0001-9045-832X

Servet Giray Hacıpasaoglu This is me 0000-0001-6698-3562

Publication Date March 11, 2022
Submission Date November 20, 2020
Published in Issue Year 2022 Volume: 8 Issue: 2

Cite

APA Aktemur, C., & Hacıpasaoglu, S. G. (2022). An application of conventional and advanced exergy approaches on a R41/R1233ZD(E) cascade refrigeration system under optimum conditions. Journal of Thermal Engineering, 8(2), 182-201. https://doi.org/10.18186/thermal.1080196
AMA Aktemur C, Hacıpasaoglu SG. An application of conventional and advanced exergy approaches on a R41/R1233ZD(E) cascade refrigeration system under optimum conditions. Journal of Thermal Engineering. March 2022;8(2):182-201. doi:10.18186/thermal.1080196
Chicago Aktemur, Cenker, and Servet Giray Hacıpasaoglu. “An Application of Conventional and Advanced Exergy Approaches on a R41/R1233ZD(E) Cascade Refrigeration System under Optimum Conditions”. Journal of Thermal Engineering 8, no. 2 (March 2022): 182-201. https://doi.org/10.18186/thermal.1080196.
EndNote Aktemur C, Hacıpasaoglu SG (March 1, 2022) An application of conventional and advanced exergy approaches on a R41/R1233ZD(E) cascade refrigeration system under optimum conditions. Journal of Thermal Engineering 8 2 182–201.
IEEE C. Aktemur and S. G. Hacıpasaoglu, “An application of conventional and advanced exergy approaches on a R41/R1233ZD(E) cascade refrigeration system under optimum conditions”, Journal of Thermal Engineering, vol. 8, no. 2, pp. 182–201, 2022, doi: 10.18186/thermal.1080196.
ISNAD Aktemur, Cenker - Hacıpasaoglu, Servet Giray. “An Application of Conventional and Advanced Exergy Approaches on a R41/R1233ZD(E) Cascade Refrigeration System under Optimum Conditions”. Journal of Thermal Engineering 8/2 (March 2022), 182-201. https://doi.org/10.18186/thermal.1080196.
JAMA Aktemur C, Hacıpasaoglu SG. An application of conventional and advanced exergy approaches on a R41/R1233ZD(E) cascade refrigeration system under optimum conditions. Journal of Thermal Engineering. 2022;8:182–201.
MLA Aktemur, Cenker and Servet Giray Hacıpasaoglu. “An Application of Conventional and Advanced Exergy Approaches on a R41/R1233ZD(E) Cascade Refrigeration System under Optimum Conditions”. Journal of Thermal Engineering, vol. 8, no. 2, 2022, pp. 182-01, doi:10.18186/thermal.1080196.
Vancouver Aktemur C, Hacıpasaoglu SG. An application of conventional and advanced exergy approaches on a R41/R1233ZD(E) cascade refrigeration system under optimum conditions. Journal of Thermal Engineering. 2022;8(2):182-201.

IMPORTANT NOTE: JOURNAL SUBMISSION LINK http://eds.yildiz.edu.tr/journal-of-thermal-engineering