Summary
Heat pumps have a significant impact on the climate, and numerous studies exist discussing the environmental impact of heat pumps quantitatively. Life Cycle Climate Performance (LCCP) is a widely accepted metric and can evaluate the carbon footprint of heat pumps from cradle to grave. LCCP calculation typically requires inputs like annual energy consumption, the material used, refrigerant type, and charge level, which are usually the intermediate or final results from heat pump simulation tools. Thus, a platform linking the heat pump simulation software, local weather conditions, and LCCP evaluation tool can simplify the heat pump design process, especially for complicated systems. This paper presents an LCCP evaluation tool accessing the outputs from the DOE Heat Pump Design Model and the building loads and temperature bin data from AHRI standard 210/240. As for case studies, this paper investigates the LCCP values and life cycle electricity costs (LCEC) of a given cooling-based heat pump with R410A in five typical US cities. In conclusion, this cooling-based heat pump has the highest LCCP value at Chicago and lowest LCCP value at Seattle. In contrast, the heat pump has the highest LCEC at Seattle and the lowest LCEC at Miami. As a future work, a more comprehensive carbon emission and cost analysis of heat pump systems will be conducted through all major cities around the world.
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Details
- Original title: A hybrid method to evaluate the life cycle climate performance of heat pumps.
- Record ID : 30031455
- Languages: English
- Subject: Technology
- Source: Proceedings of the 26th IIR International Congress of Refrigeration: Paris , France, August 21-25, 2023.
- Publication date: 2023/08/21
- DOI: http://dx.doi.org/10.18462/iir.icr.2023.0711
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Indexing
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Themes:
Energy efficiency, energy savings;
Heat pumps techniques - Keywords: Energy efficiency; COP; LCCP; Life cycle; Energy consumption; Cost; Heat pump; Calculation; Case study; USA
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Simulation of a PCM integrated heat pump using ...
- Author(s) : LI Z., CATANO J., GLUESENKAMP K., SHEN B., LACLAIR T., COMPARIN R., WELCH D.
- Date : 2022
- Languages : English
- Source: 2022 Purdue Conferences. 19th International Refrigeration and Air-Conditioning Conference at Purdue.
- Formats : PDF
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Next generation heat pump system evaluation met...
- Author(s) : WAN H.
- Date : 2021
- Languages : English
- Formats : PDF
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Techno-economic analysis of heat export from su...
- Author(s) : STEUER D., ALMEBÄCK J., MAGNIUS R., SAWALHA S.
- Date : 2023/08/21
- Languages : English
- Source: Proceedings of the 26th IIR International Congress of Refrigeration: Paris , France, August 21-25, 2023.
- Formats : PDF
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A heat recovery unit with adjustable heat excha...
- Author(s) : LIANG C., WANG H., FANG L., NAKAZAWA T., TANAKA T., LI X.
- Date : 2023/08/21
- Languages : English
- Source: Proceedings of the 26th IIR International Congress of Refrigeration: Paris , France, August 21-25, 2023.
- Formats : PDF
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Comparative life-cycle cost analysis of refrige...
- Author(s) : GRÖNQVIST C., ROGSTAM J.
- Date : 2018/06/18
- Languages : English
- Source: 13th IIR Gustav Lorentzen Conference on Natural Refrigerants (GL2018). Proceedings. Valencia, Spain, June 18-20th 2018.
- Formats : PDF
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