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Numerical simulation of the flow field of a flat torque converter
  • 期刊名称:Journal of Beijing Institute of Technology
  • 时间:0
  • 页码:309-314
  • 分类:TH137.332[机械工程—机械制造及自动化] TQ051.8[化学工程]
  • 作者机构:[1]School of Mechanical Engineering, Beijing Institute of Technology, Beijing 100081, China
  • 相关基金:Supported by the National Natural Science Foundation of China (50905016)
  • 相关项目:提高车用液力元件功率密度的叶栅系统设计理论研究
中文摘要:

A flexible flat torque converter was proposed to fulfill the requirement of miniaturization and power density maximization for automobiles.Constructed by two arcs joined by lines,the torus was designed directly from design path.The influence of flatness on the performance of the torque converter was evaluated.The software CFX and standard k-ε model were adopted to simulate the internal flow fields of the torque converter under different flatness ratios.The results indicated that the performance of the torque converter got worse as the flatness declined,but the capacity of pump increased.The efficiency and the torque ratio dropped slightly as the flatness ratio decreased.So the torque converter could be squashed appropriately to get high power density without too much efficiency sacrifice.But when the flatness ratio was below 0.2,there was a significant drop in the efficiency.

英文摘要:

A flexible flat torque converter was proposed to fulfill the requirement of miniaturization and power density maximization for automobiles.Constructed by two arcs joined by lines,the torus was designed directly from design path.The influence of flatness on the performance of the torque converter was evaluated.The software CFX and standard k-ε model were adopted to simulate the internal flow fields of the torque converter under different flatness ratios.The results indicated that the performance of the torque converter got worse as the flatness declined,but the capacity of pump increased.The efficiency and the torque ratio dropped slightly as the flatness ratio decreased.So the torque converter could be squashed appropriately to get high power density without too much efficiency sacrifice.But when the flatness ratio was below 0.2,there was a significant drop in the efficiency.

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