Comparative analysis of a modified cascade refrigeration cycle including an auto-cascade refrigeration cycle using different zeotropic refrigerant mixtures for reducing the environmental impact

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Date

2025

Authors

Ibrahim Karacayli
Lutfiye Altay
A. Hepbasli

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Volume Title

Publisher

Institution of Chemical Engineers

Open Access Color

Green Open Access

No

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Top 10%

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Abstract

The two primary challenges in auto-cascade refrigeration (ACR) cycles are high compressor discharge temperatures and low efficiency at ultra-low temperatures. This study proposes a modified cascade refrigeration cycle (MCR) combined with an ACR cycle for cooling to –60 ℃. The innovative aspect of this work is to improve the ACR performance with simpler designs without increasing the system complexity contrary to the common trend. For the high-temperature cycle (HTC) a dual evaporator refrigeration cycle with R1234yf is used while an ACR cycle is used for the low-temperature cycle (LTC). Environmentally friendly refrigerant mixtures such as R170/R290 R170/R600a and R170/R600 were analyzed using energy exergy and exergoeconomic methods. The results show that compared to R23/R134a the R170/R600 significantly improves the performance of the MCR by increasing the COP and exergy efficiency by 24.0 % and reducing the exergy destruction by 26 % unit cooling cost by 11.2 % and total investment cost by 9.7 %. Moreover when compared with theoretical studies COP improvements range from 38.7 % to 94.1 % demonstrating the importance and superiority of the system proposed in this study. © 2024 Elsevier B.V. All rights reserved.

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Keywords

Auto-cascade, Cascade Refrigeration, Compressor Discharge Temperature, Environmentally Friendly, Zeotropic Mixture, Energy Efficiency, Environmental Impact, Auto-cascade, Auto-cascade Refrigeration, Cascade Refrigeration, Comparative Analyzes, Compressor Discharge Temperature, Discharge Temperature, Environmentally Friendly, Refrigeration Cycles, Zeotropic Mixture, Zeotropic Refrigerant Mixtures, Exergy, Energy efficiency, Environmental impact, Auto-cascade, Auto-cascade refrigeration, Cascade refrigeration, Comparative analyzes, Compressor discharge temperature, Discharge temperature, Environmentally friendly, Refrigeration cycles, Zeotropic mixture, Zeotropic refrigerant mixtures, Exergy, Gas chromatography, Nanocomposite, Taguchi experimental design, Solid phase microextraction, BTEX

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OpenCitations Citation Count
2

Source

Process Safety and Environmental Protection

Volume

193

Issue

Start Page

976

End Page

989
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Scopus : 3

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Mendeley Readers : 6

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