LAPSE:2023.27297
Published Article
LAPSE:2023.27297
Energy and Exergy Analysis of Low-Global Warming Potential Refrigerants as Replacement for R410A in Two-Speed Heat Pumps for Cold Climates
April 4, 2023
Heat pumps (HPs) are being developed with a new emphasis on cold climates. To lower the environmental impact of greenhouse gas (GHG) emissions, alternate low global warming potential (GWP) refrigerants must also replace the exclusive use of the refrigerant R410A, preferably without re-engineering the mechanical hardware. In this paper, we analyze the performance of four low-GWP alternative refrigerants (R32, R452B, R454B, and R466A) relative to the conventional R410A and draw conclusions on the relative performances for providing heating in cold climates based on the Air-Conditioning, Heating, and Refrigeration Institute (AHRI) 210/240 standard for two-speed heat pumps. The simulations are carried using the Department of Energy, Oak Ridge National Laboratory (DOE/ORNL) Heat Pump Design Model (HPDM), a well-known heating, ventilation, and air conditioning (HVAC) modeling and design tool in the public domain and the HVAC research and development community. The results of the simulation are further scrutinized using exergy analysis to identify sources of systemic inefficiency, the root cause of lost work. This rigorous approach provides an exhaustive analysis of alternate low-GWP refrigerants to replace R410A using available compressors and system components, without compromising performance.
Keywords
cold climate, Exergy, heat pumps, low-GWP refrigerants, Modelling, Simulation
Suggested Citation
Shen B, Ally MR. Energy and Exergy Analysis of Low-Global Warming Potential Refrigerants as Replacement for R410A in Two-Speed Heat Pumps for Cold Climates. (2023). LAPSE:2023.27297
Author Affiliations
Shen B: Oak Ridge National Laboratory, Energy and Transportation Sciences Division, Oak Ridge, TN 37830, USA
Ally MR: Oak Ridge National Laboratory, Energy and Transportation Sciences Division, Oak Ridge, TN 37830, USA [ORCID]
Journal Name
Energies
Volume
13
Issue
21
Article Number
E5666
Year
2020
Publication Date
2020-10-29
Published Version
ISSN
1996-1073
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PII: en13215666, Publication Type: Journal Article
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doi:10.3390/en13215666
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