Numerical Investigation on the Characteristics of Vapor Injection of Scroll Compressor for Electric Vehicle
|更新时间:2024-09-02
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Numerical Investigation on the Characteristics of Vapor Injection of Scroll Compressor for Electric Vehicle
Journal of RefrigerationVol. 45, Issue 4, Pages: 131-138(2024)
作者机构:
上海理工大学能源与动力工程学院 上海 200093
作者简介:
Tian Yafen, female, Ph. D., lecturer, School of Energy and Power Engineering, University of Shanghai for Science and Technology, 86-13162500878, E-mail:yftian_usst@qq.com. Research fields: research on the internal heat and mass transfer mechanism of screw steam compressor and expander.
基金信息:
the National Natural Science Foundation of China(52206016;51206022)
Xia Yang, Jiang Ziqi, Zhang Bin, et al. Numerical Investigation on the Characteristics of Vapor Injection of Scroll Compressor for Electric Vehicle[J]. Journal of refrigeration, 2024, 45(4): 131-138.
DOI:
Xia Yang, Jiang Ziqi, Zhang Bin, et al. Numerical Investigation on the Characteristics of Vapor Injection of Scroll Compressor for Electric Vehicle[J]. Journal of refrigeration, 2024, 45(4): 131-138. DOI: 10.3969/j.issn.0253-4339.2024.04.131.
Numerical Investigation on the Characteristics of Vapor Injection of Scroll Compressor for Electric Vehicle
To investigate the vapor injection performance of a scroll compressor with a short profile
a three-dimensional transient numerical model of a vapor-injection scroll compressor for an electric vehicle with a displacement of 38 cm
3
/r is established and verified with deviations within 9.5%. We investigated the effects of the pressure and temperature of vapor injection on the performance of the scroll compressor using the model. The results show that under the condition of a constant superheat
with an increase in injection pressure
the discharge temperature of the compressor initially decreases and then gradually increases. Moreover
the heating capacity exhibits an increasing trend
with the maximum increase in heating capacity reaching 20.5% and 17.1% at rotary speeds of 5 000 and 6 000 r/min
respectively. In addition
the heating coefficient of performance (COP) increases during the first stage and then decreases. Moreover
the maximum values of the heating COP with vapor injection at the former speeds were 3.9% and 2.3% higher than those without vapor injection
respectively. The compressor efficiency exhibits the
same tendency as the heating COP
and the volumetric efficiency gradually decreases. The compressor discharge temperature increases slightly with constant injection pressure
whereas the compressor power
heating capacity
and heating COP remain almost constant as the injection temperature increases. Compared with the injection temperature
the injection pressure has a significant impact on the scroll compressor.