Novel high heat flux thermal management with combined supercritical CO2 and a microjet heat sink

被引:1
|
作者
Mazaheri, Nima [1 ]
Mwesigye, Aggrey [1 ]
机构
[1] Univ Calgary, Schulich Sch Engn, Dept Mech & Mfg Engn, 2500 Univ Drive NW, Calgary, AB T2N 1N4, Canada
关键词
Supercritical carbon dioxide; High heat flux thermal management; Cooling IGBT modules; Electronics cooling; Double layer microjet heat sink; CARBON-DIOXIDE; JET; PERFORMANCE; FLOW; ELECTRONICS; OPTIMIZATION; TUBE;
D O I
10.1016/j.applthermaleng.2024.124143
中图分类号
O414.1 [热力学];
学科分类号
摘要
The limited operational range of electric vehicles (EVs) continues to be a significant hurdle to their advancement. The Insulated Gate Bipolar Transistor (IGBT) embedded in the inverters of these vehicles generates significant amounts of heat while operating and greatly impacts the vehicle's overall performance. To improve the efficiency of EVs, the present study puts forward a new thermal management system comprising a multi-layer microjet heat sink with supercritical carbon dioxide (sCO(2)) as the working fluid for cooling IGBTs with high heat fluxes. The IGBTs and diode pairs are modeled based on the motor inverter of the Toyota Prius. Each IGBT with its diode pair is embedded on a direct bound copper beneath the baseplate of the heat sink, generating heat fluxes between 120-360 W/cm(2). Inlet temperatures ranging from 25 to 35 degrees C and mass fluxes ranging from 500-2000 kg/m(2) s were used in this study. The numerical simulations are performed using the finite volume method, and the numerical procedure is validated against the experimental and numerical data. Results show that the maximum global heat transfer coefficient of sCO(2) is 60.4 kW/m(2) degrees C and that the higher inlet temperature can positively or negatively affect the thermohydraulic behavior of sCO(2) depending on operating conditions. Increasing the inlet temperature at q" < 360 W/cm(2) enhances the heat transfer coefficient over different layers up to 33 %, while at q" >= 360 W/cm(,)(2) the convective heat transfer coefficient is reduced using a higher inlet temperature. Despite a higher convective heat transfer coefficient and lower IGBT temperature with water at higher heat fluxes, sCO(2) exhibits 5 times better temperature uniformity, showing promising potential as an advanced coolant for future cutting-edge cooling systems.
引用
收藏
页数:19
相关论文
共 50 条
  • [31] Open manifold microchannel heat sink for high heat flux electronic cooling with a reduced pressure drop
    Gilmore, Nicholas
    Timchenko, Victoria
    Menictas, Chris
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2020, 163 (163)
  • [32] Thermal hydraulic characteristics of liquid sodium and supercritical CO2 in a diffusion bonded heat exchanger
    Aakre, Shaun R.
    Thoreson, Nicholas J.
    Anderson, Mark H.
    APPLIED THERMAL ENGINEERING, 2023, 226
  • [33] Transient Heat Transfer Characteristics in a Flat Plate Heat Sink with Mini-Channels for Cooling High Heat Flux IGBT
    Chen, Changnian
    Zhao, Haoran
    Liu, Chaoyu
    Chen, Jian
    Liu, Chunyang
    Zhang, Tiezhu
    Gong, Weiping
    MICROMACHINES, 2022, 13 (09)
  • [34] Experimental and numerical investigations on thermal-hydraulic characteristics of supercritical CO2 flows in printed circuit heat exchangers
    Han, Zengxiao
    Guo, Jiangfeng
    Chen, Junlin
    Huai, Xiulan
    INTERNATIONAL JOURNAL OF THERMAL SCIENCES, 2023, 194
  • [35] Numerical investigation on the Thermal-hydraulic performance of the modified channel supercritical CO2 printed circuit heat exchanger
    Wang, Jian
    Yan, Xin-ping
    Boersma, Bendiks J.
    Lu, Ming-jian
    Liu, Xiaohua
    APPLIED THERMAL ENGINEERING, 2023, 221
  • [36] Novel radial pulsating heat-pipe for high heat-flux thermal spreading
    Kelly, Brian
    Hayashi, Yoshikazu
    Kim, Yoon Jo
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2018, 121 : 97 - 106
  • [37] Performance analysis of supercritical pressure CO2 in several enhanced tubes with non-uniform heat flux
    Zhang, Haiyan
    Guo, Jiangfeng
    Cui, Xinying
    Huai, Xiulan
    APPLIED THERMAL ENGINEERING, 2020, 180
  • [38] A novel high performance, ultra thin heat sink for electronics
    Escher, W.
    Michel, B.
    Poulikakos, D.
    INTERNATIONAL JOURNAL OF HEAT AND FLUID FLOW, 2010, 31 (04) : 586 - 598
  • [39] Dynamic modeling of a particle/supercritical CO2 heat exchanger for transient analysis and control
    Fernandez-Torrijos, M.
    Albrecht, K. J.
    Ho, C. K.
    APPLIED ENERGY, 2018, 226 : 595 - 606
  • [40] Experimental study on convection heat transfer of supercritical CO2 in small upward channels
    Lei, Xianliang
    Zhang, Jun
    Gou, Lingtong
    Zhang, Qian
    Li, Huixiong
    ENERGY, 2019, 176 : 119 - 130