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Flux Training Session

Day 1 - Flux 10 - Geometry and Mesh
General Overview

Supervisor
    Presentation
    Memory Management
    Tips and Tricks
Environment
    New features
    Command language
    Macros
    Overlays
General introduction
    Fields of application
    Structure of software and general operation
Preprocessing
    Geometric description
      Domain, tools, geometric entities
    Meshing
      Automatic mesh (triangular)
      Mapped, mixed mesh (quadrilateral)
Example: Geometry and mesh of an actuator

Day 2 - Flux 10 - Physical Properties, Solving and Post-Processing

Physics
    Circuit connections
      Circuit Editor
      Coil coefficients
    Physical properties
      Materials
      Regions
      Mechanical sets
      Coils
      Electrical components
Solving process
    Direct
    Batch
Post-processing
    Plot
    Local values
    Global values
    Curves
    Results display
Example: Geometry and mesh of a velocity sensor

Day 3 - Morning - Flux2D Legacy to New Flux2D

Electric circuit

Mechanical set

Static Initialisation

Solving
    New 2D solver
    Solver2D
Post-processing
    New 2D Post-processing
    Post-pro2D

Day 3 - Afternoon - Flux2D Application to Electric Machines

Flux 2D overlays
    BLDC Motors (Brushless PM DC Motors)
    IMD Motors (Induction Motors)
    SRM (Switch Reluctance Motors)
    Import of Speed files
Simulation with square wave drive (Voltage source) for BLDC motors
    Square wave drive circuit Y connections Delta connections
    Switching angles
    Magnet Properties Magnetization direction Eddy Currents
    Simulation at constant speed Time step
    User subroutines for switches
    Post-processing
      Saturation
      Torque Ripple
      Electrical quantities
      Core losses with Berttoti's method Efficiencies


Please note, that this is a general outline for the Flux Training Sessions. The pace and overall content which will be covered is dependent upon the nature, knowledge and competency of the collective attendees.