Research on ventilation and heat dissipation performance of trailer power station

Автор: Liu Fangzhou

Журнал: Бюллетень науки и практики @bulletennauki

Рубрика: Технические науки

Статья в выпуске: 7 т.8, 2022 года.

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The results show that the use of CFD software to simulate the ventilation and heat dissipation of the trailer power station cabin, Get the flow field and temperature field in the cabin, The position of the highest temperature in the vehicle cabin can be determined quantitatively, which provides a useful reference for the design of the cabin structure of the trailer power station and the arrangement of the equipment in the vehicle. Moreover, the simulation results are in good agreement with the experimental results. It shows that the selected Realizable k-ε Turbulence Model can more accurately simulate the air flow field in the cabin of the trailer power station. It also shows that the model simplification method used in the calculation and the setting of analytical conditions are reasonable.

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Trailer power station, ventilation and heat dissipation, flow field, temperature field, cfd

Короткий адрес: https://sciup.org/14124455

IDR: 14124455   |   DOI: 10.33619/2414-2948/80/33

Список литературы Research on ventilation and heat dissipation performance of trailer power station

  • Rui, T., & Ruisheng, W. (2012). On High-low Temperature test method of a certain type of military Power Van. Equipment Environ Eng, 1, 102-104.
  • Wang, X. F., Gu, J., & Qian, Z. (2011). Application analysis on emergency power vehicle. East China Electric Power, 39, 2135-2137.
  • Xiao, Honglin, Li, Hongliang, & Wang, Yuan, et al. (2011). An Investigation into the Numerical Simulation of Flow Field in Passenger Compartment. Automotive Engineering, 33(1), 31-37.
  • Xiayi, Y., Zhengqi, G. U., & Yi, Y. A. (2009). Numerical simulation on vehicle underhood cooling. Automotive Engineering, 31(9), 843-844.
  • Xiao, Honglin, Guo, Mingming, Li, Hongliang (2011). A Numerical Simulation Study on the Heat Dissipation Characteristics of Power Battery Pack in Electric Vehicles. Automotive Engineering, 33(11). 999-1002.
  • Zhang, Kun, Wang, Yuzhang, & Yang, Xiaoyu (2011). Improving Underhood Cooling Performance by Using CFD Technique. Automotive Engineering, 33(4), 314-317.
  • Song, Sihong, Sheng, Weidong, Gao, Kai, et al. (20040. Finite Element Analysis of the Flow Field of the Military Communication Generator Set Cabin. Electro-Optic Technology Application, 19(2), 57-60.
  • Ma, Xiaowei, Sheng, Weidong, & Xu, Jiafeng, et al. (2007). Numerical Simulation and Optimized Design for Inner Temperature Field of Trailer Electric Power Plant. Movable Power Station & Vehicle, (4), 14-16.
  • Song, Sihong, Sheng, Weidong, & Wang, Jianli, et al. (2005). Numerical Simulation of Ventilation and Heat Dispersion of the Cabin for Military Communication Generator Set. Computer Simulation, 22(4), 120-123.
  • Ren, Chengqin, Cai, Dehong, & Liu, Jingping, et al. (2012). Experimental and Numerical Study of the Cooling Performance of Automobile Engine Cabin. Journal of Hunan University (Natural Science), 39(4), 314-317.
  • Jarrett, A, & Kim, I Y. (2011). Design Optimization of Electric Vehicle Battery Cooling Plates for Thermal Performance. Journal of Power Sources, 196(23), 10359-10368.
  • Ghosh, D., Maguire, P. D., & Zhu, D. X. (2009). Design and CFD Simulation of a Battery Module for a Hybrid Electric Vehicle Battery Pack. SAE Paper, 1, 1386.
  • Park, S., & Jung, D. (2013). Battery Cell Arrangement and Heat Transfer Fluid Effects on the Parasitic Power Consumption and the Cell Temperature Distribution in a Hybrid Electric Vehicle. Journal of Power Sources, 227(4), 191-198.
  • Wang, Xiancheng, Suo, Wenchao, & Zhang, Gengyun (2007). Numerical Simulation of Airflow Field and Structure Improvement in Engine Compartment of Armored Vehicles with Electric Transmission. Acta Armamentarii, 28(6), 744-748.
  • Jian, Qifei, Wang, Qiang, & Chen, Huiping (2007). 3-D Flow Field Analysis and Numerical Simulation in Fuel Cell Air Inlet Manifold. Chinese Journal of Power Sources, 31(1), 64-68.
  • Cai, Dehong (2012). Cooling Performance Research of Automotive Engine Cabin Based on Coupled Model. Changsha: Hunan University.
  • Liu, Zhenjun, Lin, Guofa, & Qin, Datong, et al. (2012). Study on the Temperature Field of Lithium-ion Battery Pack in an Electric Vehicle and Its Structural Optimization. Automotive Engineering, 34(1), 80-84.
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