Thermal modeling: conductive, convective, radiative couplings…
Thermal modeling: conductive, convective, radiative couplings…
Structural modeling: Static and dynamic loads (sine, random, shock, etc.)
Structural modeling: Static and dynamic loads (sine, random, shock, etc.)
Turbomachinery: wheel aerodynamics and hydraulics, rotor dynamics, hydrodynamic levitation, electrical engineering (motors)
Turbomachinery: wheel aerodynamics and hydraulics, rotor dynamics, hydrodynamic levitation, electrical engineering (motors)
Cryopumping: Thermal and molecular behavior using Monte Carlo techniques
Cryopumping: Thermal and molecular behavior using Monte Carlo techniques
CFD: phase change, microgravity, cryogenic fluid behavior, complex modeling…
CFD: phase change, microgravity, cryogenic fluid behavior, complex modeling…
Thermal modeling: conductive, convective, radiative couplings…
Thermal modeling: conductive, convective, radiative couplings…
Structural modeling: Static and dynamic loads (sine, random, shock, etc.)
Structural modeling: Static and dynamic loads (sine, random, shock, etc.)
Turbomachinery: wheel aerodynamics and hydraulics, rotor dynamics, hydrodynamic levitation, electrical engineering (motors)
Turbomachinery: wheel aerodynamics and hydraulics, rotor dynamics, hydrodynamic levitation, electrical engineering (motors)
Cryopumping: Thermal and molecular behavior using Monte Carlo techniques
Cryopumping: Thermal and molecular behavior using Monte Carlo techniques
CFD: phase change, microgravity, cryogenic fluid behavior, complex modeling…
CFD: phase change, microgravity, cryogenic fluid behavior, complex modeling…
Thermal modeling: conductive, convective, radiative couplings…
Thermal modeling: conductive, convective, radiative couplings…
Structural modeling: Static and dynamic loads (sine, random, shock, etc.)
Structural modeling: Static and dynamic loads (sine, random, shock, etc.)
Turbomachinery: wheel aerodynamics and hydraulics, rotor dynamics, hydrodynamic levitation, electrical engineering (motors)
Turbomachinery: wheel aerodynamics and hydraulics, rotor dynamics, hydrodynamic levitation, electrical engineering (motors)
Cryopumping: Thermal and molecular behavior using Monte Carlo techniques
Cryopumping: Thermal and molecular behavior using Monte Carlo techniques
CFD: phase change, microgravity, cryogenic fluid behavior, complex modeling…
CFD: phase change, microgravity, cryogenic fluid behavior, complex modeling…
Absolut System has its own documentation resources, including specialist journals and proceedings of international meetings. Our teams have considerable experience in producing cryogenic solutions for a wide range of sophisticated technologies used in these markets: space, aeronautics, new low-carbon energies, superconductivity, research…
SolidWorks CAD software for mecanical design and assembly and detailed drawings.
SAGE software for thermodynamical design and optimization of the cryogenic cycles.
FLUENT for specific CFD modeling
ThermXL for nodal modeling
GeoStar and COSMOworks for thermal and mechanical preliminary design
FEMAP with NX NASTRAN for final structural validation
FEMAP with TMG for detailed thermal analysis
SolidWorks CAD software for mecanical design and assembly and detailed drawings.
SAGE software for thermodynamical design and optimization of the cryogenic cycles.
FLUENT for specific CFD modeling
ThermXL for nodal modeling
GeoStar and COSMOworks for thermal and mechanical preliminary design
FEMAP with NX NASTRAN for final structural validation
FEMAP with TMG for detailed thermal analysis
Our engineers, specialists in cryogenics, accompanied by project managers, ensure the realization of your products from A to Z: