Journal of Jilin University(Engineering and Technology Edition) ›› 2022, Vol. 52 ›› Issue (8): 1733-1740.doi: 10.13229/j.cnki.jdxbgxb20210213

   

Experimental analysis on spray mode of power battery emergency cooling

Qing GAO1,2(),Hao-dong WANG2,Yu-bin LIU1,2,Shi JIN2,Yu CHEN2   

  1. 1.State Key Laboratory of Automotive Simulation and Control,Jilin University,Changchun 130022,China
    2.College of Automotive Engineering,Jilin University,Changchun 130022,China
  • Received:2021-03-17 Online:2022-08-01 Published:2022-08-12

Abstract:

Aiming at the thermal runaway problem of power battery during the use of electric vehicles, a power battery emergency thermal management system is proposed in this paper, which sprays high-pressure liquid refrigerant onto the surface of overheated battery to cool the battery in seconds. Experiments were conducted to analyze the effects of spray time, spray duty cycle and spray frequency on the cooling capacity of the system. The results show that when the spray time is 5 s, the average temperature drop of unit mass refrigerant is much lower than that of spray time is 6 s, which can be -41.94 ℃/kg, and the utilization efficiency of refrigerant is improved; when the duty cycle of pulse injection is 90%, the cooling capacity of the system can be enhanced by 10% than that of continuous spray, and the utilization efficiency of refrigerant also improves slightly; when the frequency of pulse injection is 2 Hz, the cooling capacity of the system exceeds that of continuous spray, and the cooling capacity of the system can be enhanced by 19.4%.

Key words: vehicle engineering, thermal runaway, emergency thermal management, spray mode

CLC Number: 

  • U469

Fig.1

Schematic diagram of power battery emergency thermal management system"

Fig.2

Schematic diagram of nozzle structure"

Table 1

Experimental procedure"

序号喷射模式喷射时长/s占空比/%频率/Hz
1连续喷射1.0100-
2连续喷射2.0100-
3连续喷射3.0100-
4连续喷射3.6100-
5连续喷射4.0100-
6连续喷射5.0100-
7连续喷射6.0100-
8脉冲喷射3.6100.50
9脉冲喷射3.6150.50
10脉冲喷射3.6300.50
11脉冲喷射3.6450.50
12脉冲喷射3.6600.50
13脉冲喷射3.6900.50
14脉冲喷射3.6600.33
15脉冲喷射3.6600.67
16脉冲喷射3.6601.00
17脉冲喷射3.6602.00

Fig.3

Experimental analysis of spray time"

Fig.4

Experimental analysis of duty cycle"

Fig.5

Experimental analysis of spray frequency"

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