Theoretical performance comparison for two-stage auto-cascade refrigeration system using hydrocarbon refrigerants
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,Building and Construction
Reference35 articles.
1. Experimental investigation on the influence of ejector geometry on the pull-down performance of an ejector-enhanced auto-cascade low-temperature freezer;Bai;J. Int. J. Refrig.,2021
2. Experimental research on the pull-down performance of an ejector enhanced auto-cascade refrigeration system for low-temperature freezer;Bai;J. Energy.,2018
3. Experimental investigation on the concentration distribution behaviors of mixture in an ejector enhanced auto-cascade refrigeration system;Bai;J. Int. J. Refrig.-Revue Int. Du Froid.,2019
4. Influence of internal heat exchanger position on the performance of ejector-enhanced auto-cascade refrigeration cycle for the low-temperature freezer;Bai;J. Energy.,2022
5. Review of vapour compression heat pumps for high temperature heating using natural working fluids;Bamigbetan;J. Int. J. Refrig.,2017
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