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    • Coefficient Form PDEs
    • Computational Solid Mechanics
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    • Heat Transfer
    • Heat & Fluid
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    • Electric
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    • Maxwell
      • Theory and Formulations
        • Modeling
        • Coupled \(A-V-J-E-T\) Resistive Magnet Model
        • Variational Formulations and Solver Strategy
        • Benchmarking and Validation
      • Maxwell Quasi-Static Models
        • \(A-V\) formulation
      • Benchmarks
        • TEAM Workshop 13
        • Torus
        • Inductor
        • Harmonic Content and Multipoles
    • Hybrized Discontinuous Galerkin
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  • Maxwell

Maxwell

The Maxwell toolbox covers static and quasi-static electromagnetic modeling, nonlinear material behavior, and validation workflows.

1. Documentation

  • Theory and formulations

  • Coupled \(A-V-J-E-T\) model for resistive magnets

  • Maxwell quasi-static models

2. Benchmark suites

  • TEAM Workshop 13 benchmark

  • Torus benchmark

  • Inductor benchmark

  • Harmonic content and multipoles

Manuals

Maxwell Theory And Formulations

Structured Maxwell theory documentation split into modeling, variational formulations, and benchmarking guidance.

Benchmarks

Harmonic Content & Multipoles magnets

We simulate the magnetic field of a multipole magnet and decompose it on a basis of cylindrical or spherical harmonics.

Inductor Benchmark

We simulate the magnetic field generated by an inductor surrounded by two cores.

Team Workshop 13 Benchmark

We simulate the TEAM Workshop 13 Benchmark to compare the saddle point formulation and the regularized one.

Torus Benchmark

We simulate a torus and compare the results with some exact solutions.

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