Experimental Study on Performance of Heat Pump Cycle of Quasi Two-stage Compression for Electric Vehicle Air-conditioning with Scroll Compressor

To solve the problem of heating in electric vehicle air-conditioning systems and suppressing the high discharge temperature of the compressor in winter, a quasi-two-stage compression heat pump system for electric vehicles has been designed using flash tank vapor injection. Additionally, an experimen...

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Main Authors: Tang Jingchun, Li Chenkai, Ye Bin, Meng Xiaolei
Format: Article
Language:zho
Published: Journal of Refrigeration Magazines Agency Co., Ltd. 2018-01-01
Series:Zhileng xuebao
Subjects:
Online Access:http://www.zhilengxuebao.com/thesisDetails#10.3969/j.issn.0253-4339.2018.01.034
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author Tang Jingchun
Li Chenkai
Ye Bin
Meng Xiaolei
author_facet Tang Jingchun
Li Chenkai
Ye Bin
Meng Xiaolei
author_sort Tang Jingchun
collection DOAJ
description To solve the problem of heating in electric vehicle air-conditioning systems and suppressing the high discharge temperature of the compressor in winter, a quasi-two-stage compression heat pump system for electric vehicles has been designed using flash tank vapor injection. Additionally, an experimental platform for testing the performance of a quasi-two-stage compression scroll compressor has been built. Using this platform, single-stage and quasi-two-stage compression scroll compressors have been tested under five different outdoor temperature conditions. The experimental results show that the discharge temperature of the compressor increases with the decrease of ambient temperature. Under all five conditions, the discharge temperature of the single-stage compression scroll compressor is higher than that of the quasi-two-stage scroll compressor. In particular, when the ambient temperature reaches ﹣7℃, the discharge temperature of the quasi-two-stage compression scroll compressor is 10 ℃, less than that of the single-stage compressor. In low-temperature conditions, compared with the single-stage compression scroll compressor, the mass flow rate of the quasi-two-stage compression scroll compressor, the system heat capacity and heating coefficient of performance (COPh) improve by 12.9%–17.4%, 7.3%–8.3% and 7.6%–8.2% respectively.
format Article
id doaj-art-14a1c047519f4c9ba4676c72b6faeeb2
institution DOAJ
issn 0253-4339
language zho
publishDate 2018-01-01
publisher Journal of Refrigeration Magazines Agency Co., Ltd.
record_format Article
series Zhileng xuebao
spelling doaj-art-14a1c047519f4c9ba4676c72b6faeeb22025-08-20T03:00:59ZzhoJournal of Refrigeration Magazines Agency Co., Ltd.Zhileng xuebao0253-43392018-01-013966513416Experimental Study on Performance of Heat Pump Cycle of Quasi Two-stage Compression for Electric Vehicle Air-conditioning with Scroll CompressorTang JingchunLi ChenkaiYe BinMeng XiaoleiTo solve the problem of heating in electric vehicle air-conditioning systems and suppressing the high discharge temperature of the compressor in winter, a quasi-two-stage compression heat pump system for electric vehicles has been designed using flash tank vapor injection. Additionally, an experimental platform for testing the performance of a quasi-two-stage compression scroll compressor has been built. Using this platform, single-stage and quasi-two-stage compression scroll compressors have been tested under five different outdoor temperature conditions. The experimental results show that the discharge temperature of the compressor increases with the decrease of ambient temperature. Under all five conditions, the discharge temperature of the single-stage compression scroll compressor is higher than that of the quasi-two-stage scroll compressor. In particular, when the ambient temperature reaches ﹣7℃, the discharge temperature of the quasi-two-stage compression scroll compressor is 10 ℃, less than that of the single-stage compressor. In low-temperature conditions, compared with the single-stage compression scroll compressor, the mass flow rate of the quasi-two-stage compression scroll compressor, the system heat capacity and heating coefficient of performance (COPh) improve by 12.9%–17.4%, 7.3%–8.3% and 7.6%–8.2% respectively.http://www.zhilengxuebao.com/thesisDetails#10.3969/j.issn.0253-4339.2018.01.034scroll compressorelectric vehicle air-conditioningquasi two-stage compressionheat pumpperformance experiment
spellingShingle Tang Jingchun
Li Chenkai
Ye Bin
Meng Xiaolei
Experimental Study on Performance of Heat Pump Cycle of Quasi Two-stage Compression for Electric Vehicle Air-conditioning with Scroll Compressor
Zhileng xuebao
scroll compressor
electric vehicle air-conditioning
quasi two-stage compression
heat pump
performance experiment
title Experimental Study on Performance of Heat Pump Cycle of Quasi Two-stage Compression for Electric Vehicle Air-conditioning with Scroll Compressor
title_full Experimental Study on Performance of Heat Pump Cycle of Quasi Two-stage Compression for Electric Vehicle Air-conditioning with Scroll Compressor
title_fullStr Experimental Study on Performance of Heat Pump Cycle of Quasi Two-stage Compression for Electric Vehicle Air-conditioning with Scroll Compressor
title_full_unstemmed Experimental Study on Performance of Heat Pump Cycle of Quasi Two-stage Compression for Electric Vehicle Air-conditioning with Scroll Compressor
title_short Experimental Study on Performance of Heat Pump Cycle of Quasi Two-stage Compression for Electric Vehicle Air-conditioning with Scroll Compressor
title_sort experimental study on performance of heat pump cycle of quasi two stage compression for electric vehicle air conditioning with scroll compressor
topic scroll compressor
electric vehicle air-conditioning
quasi two-stage compression
heat pump
performance experiment
url http://www.zhilengxuebao.com/thesisDetails#10.3969/j.issn.0253-4339.2018.01.034
work_keys_str_mv AT tangjingchun experimentalstudyonperformanceofheatpumpcycleofquasitwostagecompressionforelectricvehicleairconditioningwithscrollcompressor
AT lichenkai experimentalstudyonperformanceofheatpumpcycleofquasitwostagecompressionforelectricvehicleairconditioningwithscrollcompressor
AT yebin experimentalstudyonperformanceofheatpumpcycleofquasitwostagecompressionforelectricvehicleairconditioningwithscrollcompressor
AT mengxiaolei experimentalstudyonperformanceofheatpumpcycleofquasitwostagecompressionforelectricvehicleairconditioningwithscrollcompressor