Analysis of energy loss mechanism at the speed ratio of design operating condition in hydrodynamic torque converters

Qingdong Yan, Mingxing Huang, Wei Wei*

*Corresponding author for this work

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

1 Citation (Scopus)

Abstract

Low transmission efficiency of hydrodynamic torque converters limits their wider application, so it is necessary to observe the microstructures of internal flow in depth and to analyze the mechanism of energy loss for reducing the energy loss in flow field. Computational Fluid Dynamics (CFD) is a common way to model and simulate the flow field and Proper Orthogonal Decomposition (POD) is also a good method to do some simplified calculation. Combined CFD and POD, internal flow field in a hydrodynamic torque converter was analyzed to study the relationships among energy percentage of the first mode, vortex structure and the mechanism of energy loss on design operating condition (speed ratio of 0.7). Compared with the energy percentage amount of the first mode, the phenomenon was found that the vortex structure of the internal flow field became clearer with larger percentage amount. Therefore, the existence of regular vortex structure is the major reason for energy loss inside hydrodynamic torque converters. The position of vortex core went hand in hand with internal structures not only with the existence of low pressure area, but also the different locations with various features, which should be adopted to improve the performance in hydrodynamic torque converters.

Original languageEnglish
Title of host publicationFluids Engineering
PublisherAmerican Society of Mechanical Engineers (ASME)
ISBN (Electronic)9780791850619
DOIs
Publication statusPublished - 2016
EventASME 2016 International Mechanical Engineering Congress and Exposition, IMECE 2016 - Phoenix, United States
Duration: 11 Nov 201617 Nov 2016

Publication series

NameASME International Mechanical Engineering Congress and Exposition, Proceedings (IMECE)
Volume7

Conference

ConferenceASME 2016 International Mechanical Engineering Congress and Exposition, IMECE 2016
Country/TerritoryUnited States
CityPhoenix
Period11/11/1617/11/16

Keywords

  • Computational fluid dynamic
  • Energy percentage of the first mode
  • Proper orthogonal decomposition
  • The mechanism of energy loss
  • Vortex identification
  • Vorticity

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