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Lubrication of R290 Rotary Compressor Used in Low-Temperature Air-Water Heat Pumps.

Authors :
Shi, Hongyan
Lei, Bowen
Wu, Jianhua
Source :
International Journal of Refrigeration. Dec2022, Vol. 144, p163-174. 12p.
Publication Year :
2022

Abstract

• R290 vapor injection rotary compressor was used in low temperature heat pump. • Oil sump thermophysical properties and bearing oil film thickness were studied. • Experiments was conducted at ambient temperature of 7°C,-12°C, -20°C, -30°C. • Temperature and viscosity of oil sump have gradient, while solubility is uniform. • POE68 showed better performance than PAG40 in this study. Owing to the environmental friendly and low discharge temperature of propane (R290), R290 rotary compressor was proposed to use in low-temperature heat pump (ambient temperature of 7 ∼ -30°C). At present, research on lubricants of R290 rotary compressors used in low-temperature heat pumps is still lacking. Therefore, in this study, the oil sump thermophysical properties (temperature, solubility, and viscosity) of R290 rotary compressors used in low-temperature air-water heat pumps (LT-AWHP) and their influence on the oil film thickness of the bearings were studied experimentally and numerically. The study was conducted under different ambient temperatures (7, -12, -20, and -30°C) with different lubricants (PAG40 and POE68). The results show that under any condition, the oil sump solubility is uniform, and is close to the oil sump inlet saturation solubility (S oup-sat), while the viscosity in the oil sump outlet is higher than that in the oil sump inlet. Additionally, the oil film thickness and performance comparison show that POE68 is more suitable for low-temperature heat pumps than PAG40. We suggest that measures should be taken to decrease the oil sump viscosity under lower ambient temperatures and increase it under higher outlet water temperatures when using POE68. These results would provide guidelines for the choice of oil in the R290 rotary compressor for low-temperature heat pump and thus improving its performance and reliability. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
01407007
Volume :
144
Database :
Academic Search Index
Journal :
International Journal of Refrigeration
Publication Type :
Academic Journal
Accession number :
161015618
Full Text :
https://doi.org/10.1016/j.ijrefrig.2022.07.007