Multiphysics

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  1. Electromagnetic Field Thermal Fluid Coupled Analysis for In-Vehicle Motors 2.0

    Kengo Toda, TODA RACING Co., Ltd.

  2. The Need for Large-Scale Calculations in Induction Heating

    Ayaka Nakata, KOYO THERMO SYSTEMS CO.,LTD.

  3. Integrated Electromagnetics-Thermal Analysis of Electric Motor: Benefits and Pitfalls of Multi-physics Modeling

    Seunghwan Keum, General Motors

  4. Heat Balance of 90kW Class 50,000rpm SPM Motor for Rocket Engine Propellant Supply -Modeling by Linking JMAG-RT and AMESIM Software-

    Mitsuru Shimagaki, Japan Aerospace Exploration Agency

  5. JMAG & GT-SUITE Link for EV Traction Motor 1D Thermal Analysis

    Masako Shibamori, AISIN SEIKI CO., LTD.

  6. [JAC228] Induction Motor Thermal Analysis

    In this example, evaluating induction motor temperature distribution.

  7. [JAC226] Vibration Characteristics Analysis of SPM Motors

    In this example, the acceleration is evaluated by obtaining the electromagnetic force generated in the stator core of the SPM motor at multiple rotation speeds and coupling with t…

  8. [JAC234] Vibration Characteristics Analysis of an Induction Motor

    In this example, electromagnetic force generated in the induction motor stator core is obtained, and an example of evaluating sound pressure by linking it with the eigenmode of th…

  9. [JAC233] Induction Heating Coil Optimization

    In this example, an example of using an optimization function to design a coil to use for induction hardening a gear is presented.

  10. [JFT097] Optimization Execution Using Material Characteristics as Design Variables

    In this document, how to perform optimization with material characteristics used as design variables is presented.

  11. TODA RACING Co., Ltd.

    TODA RACING Co., LTD is focused on parts manufacturing, prototyping, and test stands mainly for racing.We continue to undertake challenges with the motto of "Transforming Automoti…

  12. Re-consideration of E-machine Thermal Management Using Recent Capabilities of Numerical Simulation

    Makoto Sato, Siemens PLM Software Computational Dynamics, K.K

  13. Combining Computational Fluid Dynamics and Electromagnetic Finite Element Simulations for Transient and Steady State Motor Cooling Simulations

    Tristan Burton, Convergent Science, Inc.

  14. Optimization (multi-objective, multi-physical) and Verification of E-Motor Design Using Real Test Bench Data

    Tim Schwartz / Sebastian Igel, Great Wall Motor Austria Research & Development GmbH

  15. Analytical/Experimental Verification of Thermal Characteristics of Axial Gap Motors, and Comparison Between Axial and Radial Gap Motors

    Ren Tsunata, Okayama University

  16. Speeding up Induction Heating Analysis by Utilizing the Cloud

    Ayaka Nakata, KOYO THERMO SYSTEMS CO.,LTD.

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