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- - CFD ANALYSES

Analyses Types



External aerodynamics
- - flow around external bodies
- - aeronautical, automotive configurations, civil structures
Internal aerodynamics
- - flow inside of internal chambers, channels, etc.
Hydrodynamics
- - flow of liquid phase
Fluid/Structure Interaction
- - fluid induced vibration and deformation
- - heat transfer due to a convection
Development of advanced physical models


Click image for close up view
 
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FIGURE 1
Analysis of flow inside of compressor casing


 
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FIGURE 2
Design of aerodynamic configuration


 
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FIGURE 3
Flow induced vibration study


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FIGURE 4
Internal flow analysis


 
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FIGURE 5
External aerodynamics of building


 
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FIGURE 6
Flow inside of radial compressor


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FIGURE 7
Pressure losses optimization


 
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FIGURE 8
Flow analysis of axial stator/rotor stage


 
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FIGURE 9
Flow analysis of rotor cooling


Benefits


High quality product
- - venhanced performance parameters due to an optimized flow field
- - reduction of noise level
Time saving
- - in design phase (less rework, early identification of potential problem)
- - in testing phase (less testing)
Cost saving
- - for time in development phase
- - for needless prototypes
Competitive advantage
- - you will deliver your product to the market earlier
- - high quality product will increase your competitive advantage

Examples


Comparison of aerodynamic parameters for different geometrical and flow configurations.
Optimization of pressure loss in internal flow.
Flow analysis of rotating machines such as fans, compressors or turbines – axial or radial.
Loading of structures due to a weather conditions.
Heat transfer calculation during cooling or heating of components due to forced or natural convection.


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