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  • Induction shrink fit in a gas turbine is modeled. The fit is realized by pressing of the heated steel disk carrying the blades on shaft and its purpose is transferring a relatively high torque in specific operation conditions. The paper deals with its computer modeling, which represents numerical solution of a nonlinear and nonstationary coupled problem characterized by interaction of magnetic field, temperature field and field of thermoelastic displacements. Computations are carried out using a combination of commercial and own codes. The methodology is illustrated by a typical example.
  • Induction shrink fit in a gas turbine is modeled. The fit is realized by pressing of the heated steel disk carrying the blades on shaft and its purpose is transferring a relatively high torque in specific operation conditions. The paper deals with its computer modeling, which represents numerical solution of a nonlinear and nonstationary coupled problem characterized by interaction of magnetic field, temperature field and field of thermoelastic displacements. Computations are carried out using a combination of commercial and own codes. The methodology is illustrated by a typical example. (en)
Title
  • Modeling of Induction Shrink Fit of Action Wheel in Gas Turbine
  • Modeling of Induction Shrink Fit of Action Wheel in Gas Turbine (en)
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  • Modeling of Induction Shrink Fit of Action Wheel in Gas Turbine
  • Modeling of Induction Shrink Fit of Action Wheel in Gas Turbine (en)
skos:notation
  • RIV/49777513:23220/11:43922708!RIV15-GA0-23220___
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  • P(GAP102/11/0498)
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  • 212995
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  • RIV/49777513:23220/11:43922708
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  • thermoelasticity; shaft; induction heating; coupled problem; Shrink fit (en)
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  • [EF93F65BEFB5]
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  • Doležel, Ivo
  • Ulrych, Bohuš
  • Kotlan, Václav
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  • 23220
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