Multiphysics Simulation
We perform advanced multiphysics simulations that combine structural, thermal, fluid, and electromagnetic analyses into a unified engineering model. By evaluating how multiple physical phenomena interact, we help engineers optimize designs, improve reliability, and solve complex engineering challenges that cannot be accurately analyzed using a single discipline alone.

What We Analyze
Our multiphysics analyses evaluate the interaction between multiple physical phenomena to predict real-world system behavior, improve product performance, and reduce engineering risk before physical testing.

Thermal–Structural Coupling

Fluid–Structure Interaction

Electromagnetic Effects

Mechanical Response

Heat Transfer

Coupled Engineering Systems
Why
Multiphysics Simulation?
Real engineering systems rarely involve a single physical phenomenon. Multiphysics simulation combines multiple engineering disciplines into one integrated model, allowing engineers to better predict system behavior, reduce uncertainty, improve reliability, and optimize performance before physical testing.
Applications
- Thermal–Structural Analysis
- Fluid–Structure Interaction
- Electromagnetic–Thermal Coupling
- Coupled Mechanical Systems
- Product Design Optimization
- Failure Investigation
Thermal–Structural Analysis
Evaluate how temperature changes influence structural deformation, thermal stresses, and component performance under real operating conditions.
Common Applications
- Thermal expansion
- Heat-induced deformation
- Thermal stress analysis
- High-temperature equipment
- Electronic packaging
- Heat exchangers
Fluid–Structure Interaction
Analyze how fluid forces interact with structural components to predict deformation, vibration, pressure loading, and overall system behavior.
Common Applications
- Pressure vessels
- Pipelines
- Turbomachinery
- Valves
- Offshore structures
- Aerospace components
Electromagnetic–Thermal Coupling
Simulate the interaction between electromagnetic fields and heat generation to improve the design and reliability of electrical and electronic systems.
Common Applications
- Electric motors
- Transformers
- Induction heating
- Power electronics
- Electromagnetic devices
- Battery systems
Coupled Mechanical Systems
Evaluate the combined effects of multiple loading conditions including structural, thermal, and dynamic responses to improve engineering performance.
Common Applications
- Industrial machinery
- Mechanical assemblies
- Heavy equipment
- Rotating machinery
- Manufacturing equipment
- Mechanical components
Product Design Optimization
Use multiphysics simulations to optimize engineering designs by evaluating multiple interacting physical behaviors simultaneously, reducing prototypes and accelerating product development.
Common Applications
- Product development
- Lightweight design
- Design validation
- Performance optimization
- Material selection
- Prototype reduction
Failure Investigation
Reconstruct complex engineering failures involving multiple interacting physical phenomena to identify contributing factors and determine root causes.
Common Applications
- Thermal failures
- Structural failures
- Equipment failures
- Product failures
- Multiphysics root cause analysis
- Engineering investigations