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September 21, 2025The International Journal of Maritime Engineering

Exergetic and Energetic Analysis of an Ejector-Assisted Vapour Compression Refrigeration System Utilizing Ammonia, Propane, and Isobutane

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Authors

ASAnkur SachdevaAAAkhilesh AroraBAB.B. Arora

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Overview

Parametric analysis reveals the potential of ejector systems to enhance energy efficiency in refrigeration, suggesting sustainable refrigerant choices.

Key Points

  • Ejector-assisted ventilation shows a significant increase in the coefficient of performance in refrigeration systems.
  • At certain conditions, isobutane yields the highest Coefficient of Performance of 6.14, enhancing energy efficiency.
  • The analysis indicates a maximum exergy destruction of 59.64 kW for ammonia, pertinent to system optimization.
  • Performance metrics demonstrate the efficacy of using alternative refrigerants over traditional hydrofluorocarbons.

Cite This Study

Sachdeva et al. (2025) studied this question.

synapsesocial.com/papers/68d46abb31b076d99fa68087https://doi.org/10.5750/ijme.v167ia3(s).1678
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Energy and exergy analysis of a renewable energy-driven ejector-compressor cycle with optimal refrigerant selection2025
  2. 2Comparative Exergoeconomic Analysis of Three Vapour-Compression Refrigeration System Configurations2026 · 1 citations
  3. 3Comparative evaluation of experimental ejector refrigeration system for different operating configurations2024
  4. 4A Study on Performance Comparison of Eco-Friendly Refrigerants in Vapour Compression Refrigeration Systems2026
  5. 5Experimental enhancement of vapor compression cycles through evaporative pre-cooling: a performance analysis2026 · 1 citations