IIR document
Development of a light-commercial compressor load stand to measure compressor performance using low-GWP refrigerants.
Author(s) : SCHMIDT D., SINGLETON J., BRADSHAW C. R.
Type of article: Article, IJR article
Summary
Popular hydrofluorocarbon refrigerants such as R134a and R410A are in the process of being phased out due to the high Global Warming Potential (GWP) of these fluids. A large variety of low-GWP refrigerants are being considered as replacements including R1234yf, R1234ze(E), R1234ze(D), R32, and blends of these with traditional refrigerants. As a result of high efficiency standards for HVAC&R equipment, the choice of refrigerant has a large impact on the design of a compressor to maximize its efficiency. Therefore, changing the most common refrigerants will require significant design changes to compressors and test environments that support re-design activities such as a hot-gas bypass compressor load stand. The hot-gas bypass style is a common system design to test compressors and is used for its many benefits, including rapid transition between testing conditions and low operational cost. A thermodynamic model of a hot-gas bypass cycle has been developed in Engineering Equation Solver (EES). Outputs from this model were used to select the components and tubing sizes in combination with ASHRAE guidelines. The design capacity for the load stand is a range of 10–80 tons (35–281 kW) compressor capacity. The large range in capacities desired created many design challenges to overcome including maintaining proper oil circulation and refrigerant velocity. The compressor load stand is capable of testing the performance of different compressors over a range of operating conditions. It also includes independent control over oil circulation/injection rate as well as a dedicated economizer circuit. These capabilities can then be used to optimize a wide spectrum of compressor types on low-GWP refrigerants. Ultimately, the load stand serves as a new addition to the thermal systems research infrastructure at Oklahoma State University. This allows for the continuation of research into new compressor technologies, as well as, for improvements in compressor efficiency in existing technologies.
Available documents
Format PDF
Pages: 443-453
Available
Public price
20 €
Member price*
Free
* Best rate depending on membership category (see the detailed benefits of individual and corporate memberships).
Details
- Original title: Development of a light-commercial compressor load stand to measure compressor performance using low-GWP refrigerants.
- Record ID : 30025650
- Languages: English
- Subject: HFCs alternatives
- Source: International Journal of Refrigeration - Revue Internationale du Froid - vol. 100
- Publication date: 2019/04
- DOI: http://dx.doi.org/10.1016/j.ijrefrig.2019.02.009
Links
See other articles in this issue (46)
See the source
Indexing
-
Themes:
Compressors;
HFCs - Keywords: Hot gas; Lubricant; Performance; HFO; HFC; Expérimentation; Testing; Compressor
-
The effect of lubricant in HFC & HFO blend refr...
- Author(s) : CHEN Y. K., HUNG J-T., TANG H-H., et al.
- Date : 2018/07/09
- Languages : English
- Source: 2018 Purdue Conferences. 17th International Refrigeration and Air-Conditioning Conference at Purdue.
- Formats : PDF
View record
-
Concentration measurement of refrigerant/lubric...
- Author(s) : GINIES P., EVEN Y., GUESNAY Q.
- Date : 2018/07/09
- Languages : English
- Source: 2018 Purdue Conferences. 24th International Compressor Engineering Conference at Purdue.
- Formats : PDF
View record
-
20/20 Vision – Interaction of lubricants and ne...
- Author(s) : KARNAZ J.
- Date : 2021/05
- Languages : English
- Source: 2021 Purdue Conferences. 18th International Refrigeration and Air-Conditioning Conference at Purdue.
- Formats : PDF
View record
-
Properties of lubricants for refrigeration syst...
- Author(s) : NAKAJIMA S., MATSUMOTO T., KAWAGUCHI Y.
- Date : 2018/07/09
- Languages : English
- Source: 2018 Purdue Conferences. 17th International Refrigeration and Air-Conditioning Conference at Purdue.
- Formats : PDF
View record
-
Experimental drop-in replacement of R404A for w...
- Author(s) : MOTA BABILONI A., HARO ORTUNO J., NAVARRO-ESBRÍ J., et al.
- Date : 2018/07
- Languages : English
- Source: International Journal of Refrigeration - Revue Internationale du Froid - vol. 91
- Formats : PDF
View record