PRACE Autumn School 2013 - Industry Oriented Simulations
RBF morph theory and applications case-history
Dr. Marco Evangelos Biancolini, "Tor Vergata" University of Rome, University of Ljubljana
September 2013
Slide contents
RBF Morph training agenda - general introduction
RBF Morph training material
RBF Morph training
RBF Morph outline
Morphing and smoothing
RBF Morph features
Mesh Morphing with radial basis functions
One pt at center 80 pts at border
Effect on surface (gs-r)
Effect on surface (cp-c4)
Effect on surface (1166pts))
Morphing the volume mesh
Background: RBF Theory1
Background: RBF Theory2
Background: RBF Theory3
Background: accelerating the solver
Background: solver performances escalation
Coming soon: GPU acceleration!
Scaling plot
How it works: the work-flow
How it works: the problem setup
Industrial applications
Motorbike windshield
Formula 1 front wing
Motorbike windshield
Formula 1 front wing
Sails trim
Exhaust manifold contrained optimization adjoint solver
Optimized vs. original - streamlines
Optimization of sweep angles
Optimization of nacelle
50:50:50 Project Volvo XC60
Aeroelastic Analysis of Formula 1 front wing - 1
Aeroelastic Analysis of Formula 1 front wing - 2
MORPH lab
Ice accretion morphing
3D accretion morphing
Ship hull1
Ship hull2
Modeling guidelines
end