International audienceThis paper describes a work in progress about software and hardware architecture to steer and control an ongoing fluid simulation in a context of a serious game application. We propose to use the Lattice Boltzmann Method as the simulation approach considering that it can provide fully parallel algorithms to reach interactive time and because it's easier to change parameters while the simulation is in progress remaining physically relevant than more classical simulation approaches. We describe which parameters we can modify and how we solve technical issues of interactive steering and we finally show an application of our interactive fluid simulation approach of water dam phenomena
Abstract—We present a physically-based, yet fast and simple method to simulate gaseous phenomena. In...
We investigate the use of dynamic load balancing for more efficient parallel Lattice Boltzmann Metho...
We investigate the use of dynamic load balancing for more efficient parallel Lattice Boltzmann Metho...
International audienceThis paper describes a work in progress about software and hardware architectu...
International audienceThis paper describes a work in progress about software and hardware architectu...
International audienceThis paper describes a work in progress about software and hardware architectu...
International audienceA conventional study of fluid simulation involves different stages including c...
International audienceA conventional study of fluid simulation involves different stages including c...
International audienceA conventional study of fluid simulation involves different stages including c...
International audienceA conventional study of fluid simulation involves different stages including c...
International audienceA conventional study of fluid simulation involves different stages including c...
Computationally demanding numerical simulations can be significantly accelerated using GPU (Graphics...
Nowadays there is great demand for realistic simulations in the computer graphics field. Physically-...
© 2018 T. Djukic and N. Filipovic. Computationally demanding numerical simulations can be significan...
Lattice-Boltzmann methods are versatile numerical modeling techniques capable of reproducing a wide ...
Abstract—We present a physically-based, yet fast and simple method to simulate gaseous phenomena. In...
We investigate the use of dynamic load balancing for more efficient parallel Lattice Boltzmann Metho...
We investigate the use of dynamic load balancing for more efficient parallel Lattice Boltzmann Metho...
International audienceThis paper describes a work in progress about software and hardware architectu...
International audienceThis paper describes a work in progress about software and hardware architectu...
International audienceThis paper describes a work in progress about software and hardware architectu...
International audienceA conventional study of fluid simulation involves different stages including c...
International audienceA conventional study of fluid simulation involves different stages including c...
International audienceA conventional study of fluid simulation involves different stages including c...
International audienceA conventional study of fluid simulation involves different stages including c...
International audienceA conventional study of fluid simulation involves different stages including c...
Computationally demanding numerical simulations can be significantly accelerated using GPU (Graphics...
Nowadays there is great demand for realistic simulations in the computer graphics field. Physically-...
© 2018 T. Djukic and N. Filipovic. Computationally demanding numerical simulations can be significan...
Lattice-Boltzmann methods are versatile numerical modeling techniques capable of reproducing a wide ...
Abstract—We present a physically-based, yet fast and simple method to simulate gaseous phenomena. In...
We investigate the use of dynamic load balancing for more efficient parallel Lattice Boltzmann Metho...
We investigate the use of dynamic load balancing for more efficient parallel Lattice Boltzmann Metho...