A development field focused on numerical simulations of structural behavior and airflow, making it possible to verify the functionality, safety, and efficiency of designs before physical testing. Using computational methods, we analyze crash tests, biomechanical injury criteria, and vehicle aerodynamics, and we propose optimizations to achieve more efficient and technically precise solutions.
Computational analyses for efficient, optimized development.
Simulations and analysis
Crash
Simulation of crash and dynamic events using FEM models, focusing on strength, deformation, and structural response.
Model building
Computation
Evaluation and optimization
Processing and mashing of 3D CAD data in ANSA to create finite element (FE) models for crash simulation analyses.
Crash simulations are performed using PAM-CRASH software, followed by result evaluation, verification and validation.
Analysis of structural deformation, occupant biomechanical injury criteria, and vehicle safety system performance using META software, followed by the development of optimized engineering solutions.
Model building
Processing and mashing of 3D CAD data in ANSA to create finite element (FE) models for crash simulation analyses.
Computation
Crash simulations are performed using PAM-CRASH software, followed by result evaluation, verification and validation.
Evaluation and optimization
Analysis of structural deformation, occupant biomechanical injury criteria, and vehicle safety system performance using META software, followed by the development of optimized engineering solutions.
Aerodynamics
Simulations and analysis of airflow.
Internal aerodynamics
External aerodynamics
We create computational models of internal airflow and perform engineering optimizations of dashboard vents and air-conditioning outlets to ensure proper performance of the defrosting, heating, and air-conditioning systems.
We create computational models of external airflow, optimize vehicle aerodynamics, and improve the efficiency of airflow through the engine compartment. We contribute to reducing CO₂ emissions.
Internal aerodynamics
We create computational models of internal airflow and perform engineering optimizations of dashboard vents and air-conditioning outlets to ensure proper performance of the defrosting, heating, and air-conditioning systems.
External aerodynamics
We create computational models of external airflow, optimize vehicle aerodynamics, and improve the efficiency of airflow through the engine compartment. We contribute to reducing CO₂ emissions.

