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- W2557194265 abstract "This investigation details the development of a simple transient model to predict the bulk toroidal flow fluid temperature of the automotive torque converter based upon an energy balance and the derivation of an overall convective heat transfer correlation for the entire turbomachine. Data collected on a torque converter specific dynamometer setup is used to derive a Nusselt correlation for overall convective heat transfer from the shell using measured parameters. Dimensional analysis applied to three torque converters of nearly exact geometric similitude was used to show the applicability of the correlation to prediction of the overall external convective heat transfer mechanism. Discussion is focused on operation at low speed ratios for varying lengths of time. This particular condition represents the worst-case scenario for torque converter operating efficiency and heat rejection. It was found that the external heat rejection from the torque converter shell surface is a function of the rotational Reynolds number and proportional to the characteristic dimensionless performance number unit input speed. The model is shown to trend with temperature measurements made at the external shell of the torque converter over a variety of zero speed ratio transient maneuvers. Overall, the first order, linear differential equation model and Nusselt correlation for overall heat transfer are a first step in developing an adequate tool for use in future torque converter designs predicated on scalability of the turbomachines performance quantified through dimensionless numbers." @default.
- W2557194265 created "2016-11-30" @default.
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- W2557194265 date "2016-04-10" @default.
- W2557194265 modified "2023-09-26" @default.
- W2557194265 title "Transient Heat Transfer and Energy Balance Model for Hydrodynamic Torque Converters While Operating at Extreme Speed Ratio" @default.
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