Energy, Exergy, and Life Cycle Climate Performance Analyses of Vapor Compression Refrigeration System Used C-Pentane as Refrigerant
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Kaynakça
- [1] Zhang, H., Pan, X., Chen, J., Xie, J. 2023. Energy, exergy, economic, and environmental analyses of a cascade absorption-compression refrigeration system using two-stage compression with complete intercooling. Applied Thermal Engineering, 225, 120185.
- [2] Yılmaz, M., Cimşit, C., Keven, A., Karaali, A. R. 2024. Analysis of cascade vapor compression refrigeration system using nanorefrigerants: Energy, exergy, and environmental (3E). Case Studies in Thermal Engineering, 57, 104373.
- [3] Dai, Z., Chen, X., Zhang, X., Zhang, H., Nawaz, K. 2025. Advanced exergy analysis on an ejector using a zeotropic mixture in a refrigeration system. International Journal of Refrigeration, 172, 266-283.
- [4] Zhang, C., Xin, G., Yan, Zhao, G. H., Han, J., Li, Z., Ju, C. 2024. Research on the performance of ultra-low temperature cascade refrigeration systems based on low GWP refrigerants. International Communication in Heat and Mass Transfer, 159, 108232.
- [5] Mendes, T., Orozco, D. J. R., Guzella, M. S., Ferreira-Oliveira, J. R., Venturini, O. J. 2024. Thermoeconomic model for diagnostic techniques to evaluate vapor compression refrigeration system performance. International Journal of Refrigeration, 167, 166-176.
- [6] Yıldırım, R., Şencan Şahin, A. 2023. Prediction of energy and exergy performance for subcooled and superheated vapor compression refrigeration systems using new generation refrigerants. Sustainable Energy Technologies and Assessments, 57, 103177.
- [7] http://www.solvaychemicals.com [Accessed: March. 04, 2025].
- [8] Çengel, A. Y., Boles, A. M. 1994. Thermodynamics: An Engineering Approach. New York: McGraw-Hill.
Ayrıntılar
Birincil Dil
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Enerji
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0000-0002-8577-1845
Türkiye
Yayımlanma Tarihi
24 Nisan 2026
Gönderilme Tarihi
20 Haziran 2025
Kabul Tarihi
8 Aralık 2025
Yayımlandığı Sayı
Yıl 2026 Cilt: 30 Sayı: 1