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
  • [21] Study on Thermal-Hydraulic Characteristics of Novel Channels for Printed Circuit Heat Exchanger Using Supercritical CO2
    Yang, He
    Li, Jinduo
    Wei, Huimin
    Du, Xiaoze
    Wu, Hongwei
    JOURNAL OF THERMAL SCIENCE AND ENGINEERING APPLICATIONS, 2023, 15 (11)
  • [22] MICROCHANNEL HEAT SINK FOR THERMAL MANAGEMENT OF CONCENTRATED PHOTOVOLTAIC CELLS
    Varghese, Dinumol
    Sefelnasr, Ahmed
    Sherif, Mohsen
    Alnaimat, Fadi
    Mathew, Bobby
    PROCEEDINGS OF ASME 2021 INTERNATIONAL TECHNICAL CONFERENCE AND EXHIBITION ON PACKAGING AND INTEGRATION OF ELECTRONIC AND PHOTONIC MICROSYSTEMS (INTERPACK2021), 2021,
  • [23] Coupling effect between heat flux distribution and buoyancy of supercritical CO2 heat transfer with nonuniform heat flux in parabolic-trough collector
    Xu, Yunting
    Tian, Ran
    Dai, Xiaoye
    Shi, Lin
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2022, 195
  • [24] Numerical research on the heat transfer and pressure drop of supercritical CO2 in spiral wound tubes
    Cai, Haofei
    Jiang, Nan
    Bai, Ye
    An, Hang
    Yao, Guopeng
    NUMERICAL HEAT TRANSFER PART A-APPLICATIONS, 2024,
  • [25] Predicting heat transfer and flow features of supercritical CO2 in printed circuit heat exchangers with novel wavy minichannels
    Khoshvaght-Aliabadi, Morteza
    Ghodrati, Parvaneh
    Mortazavi, Hamed
    Kang, Yong Tae
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2022, 196
  • [26] HEAT TRANSFER OF SUPERCRITICAL CO2 NEAR THE CRITICAL CONDITION INSIDE A MICROCHANNEL
    Ahmed, Pranzal
    Parahovnik, Anatoly
    Peles, Yoav
    PROCEEDINGS OF ASME 2023 HEAT TRANSFER SUMMER CONFERENCE, HT2023, 2023,
  • [27] Heat transfer performance of supercritical CO2 in a vertical U-tube
    Wu, Yunlei
    Liu, Peng
    Huang, Lu
    Ge, Yanlin
    Chen, Lingen
    APPLIED THERMAL ENGINEERING, 2024, 250
  • [28] Novel model for heat transfer and flow correlations of precooler, preheater and regenerator in supercritical CO2 Brayton cycle
    Wang, Xin
    Yang, Lingxiao
    Xu, Bo
    Chen, Zhenqian
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2025, 241
  • [29] Flow and heat transfer characteristics of supercritical CO2 in a natural circulation loop
    Cao, Yuhui
    Zhang, Xin-Rong
    INTERNATIONAL JOURNAL OF THERMAL SCIENCES, 2012, 58 : 52 - 60
  • [30] NUMERICAL INVESTIGATION ON HEAT TRANSFER OF SUPERCRITICAL PRESSURE CO2 IN A BENT PIPE
    Liu, Haoyang
    Fang, Zhenlong
    Li, Deng
    Wu, Qiang
    Yao, Zhimin
    Zhang, Zenglei
    Shi, Ruichao
    JOURNAL OF ENHANCED HEAT TRANSFER, 2023, 30 (04) : 39 - 68