期刊文献+

Semi-Automatic Modeling Technique of Torque Converter Flow Passage 被引量:3

Semi-Automatic Modeling Technique of Torque Converter Flow Passage
下载PDF
导出
摘要 The modeling technique of hydrodynamic torque converter flow passage was investigated. The semi-automatic modeling technique of torque converter flow passage was proposed. The flow passage model of each converter wheel is considered as a revolution entity sliced by two curved surfaces. In order to generate the revolution entity, a new approximation method, condition optimum arc approximation, was proposed. The method was used to approximate the meridional streamlines of the inner and outer wall. As a result, the three-dimensional revolution entity can be conveniently generated. In order to create slice surfaces, the central stream surface of flow passage was approximated with a quadric surface. The normal vector of the quadric surface and the thickness/thickness-function of bade were used to calculate the discrete point coordinates of blade surfaces. Via the rotation transformation to the coordinates, the discrete point coordinates of slice surfaces were obtained. A parameterized program code used for the hydrodynamic torque converter design and semi-automatic modeling was developed. Modeling errors were calculated and analyzed. The flow passage model was generated in several minutes with the help of the program code, Auto CAD and Solidworks software. Finally, the model was inputted into Gambit, and the pre-processing task used for the numerical simulation of torque converter flow field was successfully completed. The investigation results show that the semi-automatic modeling not only can ensure the accuracy of modeling, but also librates the research and design workers of torque converter from the time-consuming modeling work, which paves the way for the numerical simulation of the complex flow field of the hydrodynamic torque converter. The modeling technique of hydrodynamic torque converter flow passage was investigated. The semi-automatic modeling technique of torque converter flow passage was proposed. The flow passage model of each converter wheel is considered as a revolution entity sliced by two curved surfaces. In order to generate the revolution entity, a new approximation method, condition optimum arc approximation, was proposed. The method was used to approximate the meridional streamlines of the inner and outer wall. As a result, the three-dimensional revolution entity can be conveniently generated. In order to create slice surfaces, the central stream surface of flow passage was approximated with a quadric surface. The normal vector of the quadric surface and the thickness/thickness-function of bade were used to calculate the discrete point coordinates of blade surfaces. Via the rotation transformation to the coordinates, the discrete point coordinates of slice surfaces were obtained. A parameterized program code used for the hydrodynamic torque converter design and semi-automatic modeling was developed. Modeling errors were calculated and analyzed. The flow passage model was generated in several minutes with the help of the program code, Auto CAD and Solidworks software. Finally, the model was inputted into Gambit, and the pre-processing task used for the numerical simulation of torque converter flow field was successfully completed. The investigation results show that the semi-automatic modeling not only can ensure the accuracy of modeling, but also librates the research and design workers of torque converter from the time-consuming modeling work, which paves the way for the numerical simulation of the complex flow field of the hydrodynamic torque converter.
出处 《Modern Mechanical Engineering》 2013年第2期59-68,共10页 现代机械工程(英文)
关键词 HYDRODYNAMIC TORQUE CONVERTER Flow Field Simulation SEMI-AUTOMATIC Modeling QUADRIC Surface Condition OPTIMUM Approximation Hydrodynamic Torque Converter Flow Field Simulation Semi-Automatic Modeling Quadric Surface Condition Optimum Approximation
  • 相关文献

参考文献2

二级参考文献17

  • 1魏巍,闫清东.液力变矩器叶栅系统三维优化设计方法研究[J].流体传动与控制,2006(4):41-44. 被引量:8
  • 2王健,葛安林,雷雨龙,田华.液力变矩器叶片三维成型法及其性能分析[J].吉林大学学报(工学版),2007,37(1):43-47. 被引量:12
  • 3LIU Yue,PAN Yuxue,LIU Chunbao.NUMERICAL ANALYSIS ON THREE-DIMENSIONAL FLOW FIELD OF TURBINE IN TORQUE CONVERTER[J].Chinese Journal of Mechanical Engineering,2007,20(2):94-96. 被引量:11
  • 4YANG Kaihua, YAN Qingdong, ZHENG Muqiao. Computer aided calculation of hydraulic torque converter original characteristic[C]//The Fifth International Conference on Fluid Power Transmission and Control, 2001, 4: 533-536.
  • 5SCHULZ H, GREIM R, VOLGMANN W. Calculation of three-dimensional viscous flow in hydrodynamic torque converters[J]. Journal of Turbomachinery, 1996, 118(6): 578-589.
  • 6MA Wenxing, LUO Bangjie, WU Shurong. The research on quasi-three-dimensional flow design of hydrodynamic torque converter blades[R]. SAE Paper 912701, 1991.
  • 7KAMMERER SI MAYER J F, STETTER H, et al. Development of a three-dimensional geometry optimization method for turbomachinery applications[J]. International Journal of Rotating Machinery, 2004, 10(5): 373-385.
  • 8KRAUS S O, FLACK R, HABSIEGER A, et al. Periodic velocity measurements in a wide and large radius ratio automotive torque converter at the pump/turbine interface[J]. Journal of Fluids Engineering, 2005, 127 (2): 308-316.
  • 9DONG Y, LAKSHMARAYANA B. Experimental investigation of the flow field in an automotive torque converter stator[J]. Journal of Fluids Engineering, 1999, 121(4): 788-797.
  • 10DONG Y, LAKSHMINARAYANA B. Rotating probe measurements of the pump passage flow field in an automotive torqueconverter[J]. Journal of Fluids Engineering, 2001, 123(1 ): 81-91.

共引文献11

同被引文献29

引证文献3

二级引证文献3

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部