Electromagnetic Device COMSOL Simulation
Budget: $30 – $250 SGD
I am developing a new electrical device and want its behaviour captured accurately in COMSOL Multiphysics. The job centres on an electromagnetic simulation, not fluids or structural mechanics, and I’ll provide the key inputs—material properties, precise geometric dimensions, and boundary conditions—so you can concentrate on building a robust model.
Scope
• Set up the appropriate electromagnetic physics interface, define study steps, and create a mesh that balances accuracy with reasonable solve time.
• Incorporate my supplied material parameters, CAD geometry (or sketches), and the specified boundary conditions without shortcuts.
• Run steady-state and, if needed, frequency-domain sweeps to characterise fields, currents, and any loss mechanisms.
• Generate clear plots and numerical data suitable for design decisions.
Deliverables
1. A fully documented COMSOL .mph file.
2. A concise report (PDF or Word) summarising assumptions, solver settings, and key results, with screenshots of field distributions.
3. Optional: an export of results (CSV) if further post-processing in MATLAB or Excel is helpful.
Acceptance criteria
– Model opens and runs in COMSOL 6.x without missing definitions.
– Results reproduce the boundary-condition and material property settings I provided.
– Report is understandable to an electrical-engineering audience.
If you have proven experience with electromagnetic modules in COMSOL, I’m ready to share the input data and get started right away.
Scope
• Set up the appropriate electromagnetic physics interface, define study steps, and create a mesh that balances accuracy with reasonable solve time.
• Incorporate my supplied material parameters, CAD geometry (or sketches), and the specified boundary conditions without shortcuts.
• Run steady-state and, if needed, frequency-domain sweeps to characterise fields, currents, and any loss mechanisms.
• Generate clear plots and numerical data suitable for design decisions.
Deliverables
1. A fully documented COMSOL .mph file.
2. A concise report (PDF or Word) summarising assumptions, solver settings, and key results, with screenshots of field distributions.
3. Optional: an export of results (CSV) if further post-processing in MATLAB or Excel is helpful.
Acceptance criteria
– Model opens and runs in COMSOL 6.x without missing definitions.
– Results reproduce the boundary-condition and material property settings I provided.
– Report is understandable to an electrical-engineering audience.
If you have proven experience with electromagnetic modules in COMSOL, I’m ready to share the input data and get started right away.