The Siemens PLM Software NX Advanced Flow product is an add-on module to NX Flow. It leverages the TMG-Flow computational fluid dynamics (CFD) solver to simulate complex fluid flow phenomena both accurately and efficiently.
NX Advanced Flow solves practical engineering challenges such as:
Modeling
High speed compressible flow to find choking conditions or the location of shock waves
High speed flow in rotating equipment
The proper physics within multiple parts rotating with respect to each other
Aerodynamic heating and ablation (may require coupling with NX Advanced Thermal)
The impact of large scale environmental contaminant dissemination for a given disaster scenario
Complex turbulent phenomena
Multi-species fluid mixing
Rotation and translation motion influencing the fluid flow
Calculating
Buoyancy line of offshore and marine vehicules
Size and power requirements in the case of a slurry pump application
Head losses and volume flow rates within a blood pump system
Drag and lift forces with out most accuracy
Humidity effects such as condensation on windshields
Optimizing
Aerodynamic shape
Turbomachinery components
Air intake assembly
Composite material oven components, including evaporation
The Siemens PLM Software NX Advanced Flow product is an add-on module to NX Flow. It leverages the TMG-Flow computational fluid dynamics (CFD) solver to simulate complex fluid flow phenomena both accurately and efficiently.
NX Advanced Flow solves practical engineering challenges such as:
Modeling
- High speed compressible flow to find choking conditions or the location of shock waves
- High speed flow in rotating equipment
- The proper physics within multiple parts rotating with respect to each other
- Aerodynamic heating and ablation (may require coupling with NX Advanced Thermal)
- The impact of large scale environmental contaminant dissemination for a given disaster scenario
- Complex turbulent phenomena
- Multi-species fluid mixing
- Rotation and translation motion influencing the fluid flow
Calculating
- Buoyancy line of offshore and marine vehicules
- Size and power requirements in the case of a slurry pump application
- Head losses and volume flow rates within a blood pump system
- Drag and lift forces with out most accuracy
- Humidity effects such as condensation on windshields
Optimizing
- Aerodynamic shape
- Turbomachinery components
- Air intake assembly
- Composite material oven components, including evaporation