Our skills in numerical simulations

Fluid body models

Fluid body behavior can be modeled while taking into account the solid structures.

In this case, the fluid must be represented finely enough so that the coupling generates a representative and specific behavior of the solid structure, but simply enough to minimize excessive calculation time.

4 fluid-structure coupled models

AROBAS Technologies masters 4 fluid-structure coupled models:

Fluid / structure dynamic vibratory interaction

That takes into account a fluid medium in a modal analysis, or dynamic response simulation

ELC - Eulerien-Lagrangien Couple
(for rapid dynamics)

Fluid bodies are represented by Eulerian elements (the material can flow through the mesh) and the solids are typically represented by Lagrangian elements (the material cannot flow through the mesh). The two environments usually interact by contact.

SPH - Smooth Particle Hydrodynamics
(for rapid dynamics)

Fluid bodies are represented by particles bound together by force functions. The two environments usually interact by contact.

Fluid cavity
(for general static studies and rapid dynamics)

That models a pocket of fluid in a comprehensive manner. The interaction is modeled a pressure surface on the walls. It is governed by analytical laws binding pressure to temperature, volume, and fluid quantity. All these variables are considered uniform for the same cavity.

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Linear static
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Nonlinear static
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Modal analysis
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Linear dynamic
Dynamique rapide
Rapid dynamic
Fatigue
Fatigue
Thermique
Thermal
Thermo-mécanique
Thermo-mechanical
Multiphysique
Multiphysical
Multicorps
Multibodies
Acoustique
Acoustic
Assemblages vissés
Screw assembly
Assemblages soudés
Welded assembly
Roulements à billes
Ball bearings
Véhicules complets
Full vehicule
Corps fluides
Fluid bodies
Matériaux complexes
Complex material
Plan d'expérience
Design experiment
Optimisation
Optimization

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