Coupling effect of air flow rate and operating conditions on the performance of electric vehicle r744 air conditioning system

Anci Wang, Jianmin Fang, Xiang Yin*, Yulong Song, Feng Cao, Paride Gullo

*Corresponding author for this work

Research output: Contribution to journalJournal articleResearchpeer-review

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Abstract

The air flow rate on the gas cooler side is one of the key parameters affecting the performance and running safety of transcritical CO2 electric vehicle air conditioning systems. After experimentally analyzing the effects of the air volume flow rate in the gas cooler on the cycle parameters and system performance, a novel method to evaluate the optimal air flow rate was proposed. In addition, the effect of the gas cooler air volume flow rate on the key performance parameters of the system (e.g., optimal discharge pressure) was explored. Finally, the coupling effects of the compressor speed, ambient temperature and optimal air flow rate on the system performance was also exhaustively assessed. It was found that as the discharge temperature, the CO2 temperature at the gas cooler outlet and the discharge pressure did not vary more than ±2%, the corresponding gas cooler air volume flow rate was optimal. For the single-row and dual-process microchannel evaporator used in this work, the recommended value of the optimal gas cooler air volume flow rate was 2500 m3·h−1. The results could provide reference for the fan speed design of electric vehicle CO2 air conditioning systems, especially for the performance under idling model.

Original languageEnglish
Article number4855
JournalApplied Sciences
Volume11
Issue number11
Number of pages13
ISSN2076-3417
DOIs
Publication statusPublished - 1. Jun 2021
Externally publishedYes

Bibliographical note

Funding Information:
Funding: A.W., J.F., X.Y., Y.S. and F.C. are grateful to the National Natural Science Foundation of China [grant number 51976153], the National Natural Science Foundation of China [grant number 52006162] and the National Science and Technology Major Project [grant number 2017-III-0010-0036] for funding this research.

Keywords

  • Air conditioning
  • Air flow rate
  • CO
  • Electric vehicle
  • Transcritical system

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