International audienceWe describe a method that permits the high performance simulation of fluid phenomena such as smoke, with high-level control for the artist. Our key primitives are vortex filament and vortex ring: vorticity defines a flow as well as velocity does, and for numerous interesting flows such as smoke or explosions this information is very compact and tightly linked to the visual features of the fluid. We treat these vortices as 1D Lagrangian primitives (i.e. connected particles), which permit unbounded fluids and very accurate positioning of the features. The simulation of passive density particles for rendering is totally independent of the fluid animation itself. Thus, the animation can be efficiently simulated, edited and...
This article addresses the problem of controlling the density and dynamics of smoke (a gas phenomeno...
Figure 1: Our mid-level fluid control system allows artists to specify local smoke behavior by provi...
Simulating fluids based on vortex filaments is highly attractive for the creation of special effects...
International audienceWe describe a method that permits the high performance simulation of fluid phe...
This cumulative dissertation presents a complete model for simulating smoke using polygonal vortex f...
International audienceWe introduce a novel method for describing and controlling a 3D smoke simulati...
We propose a fast and effective technique to improve sub-grid visual details of the grid based fluid...
Rolling vortices and chaotic swirling are the most visually compelling aspect of smoke. Standard num...
In this paper, we propose a new approach to numerical smoke simulation for computer graphics applica...
We introduce novel methods for enriched Lagrangian fluid simulation in three distinct areas: smoke a...
In this paper, we propose a new approach to numerical smoke simulation for computer graphics applica...
Abstract- Based the theory of fluid dynamics, an efficient method is proposed for rendering smoke mo...
Figure 1: Practical examples by our method (Top row, plume size is controlled while maintaining phys...
This paper addresses the problem of controlling the density and dynamics of smoke (a gas phenomenon)...
We present a method for real-time image based simulation of gaseous material such as fire and smoke....
This article addresses the problem of controlling the density and dynamics of smoke (a gas phenomeno...
Figure 1: Our mid-level fluid control system allows artists to specify local smoke behavior by provi...
Simulating fluids based on vortex filaments is highly attractive for the creation of special effects...
International audienceWe describe a method that permits the high performance simulation of fluid phe...
This cumulative dissertation presents a complete model for simulating smoke using polygonal vortex f...
International audienceWe introduce a novel method for describing and controlling a 3D smoke simulati...
We propose a fast and effective technique to improve sub-grid visual details of the grid based fluid...
Rolling vortices and chaotic swirling are the most visually compelling aspect of smoke. Standard num...
In this paper, we propose a new approach to numerical smoke simulation for computer graphics applica...
We introduce novel methods for enriched Lagrangian fluid simulation in three distinct areas: smoke a...
In this paper, we propose a new approach to numerical smoke simulation for computer graphics applica...
Abstract- Based the theory of fluid dynamics, an efficient method is proposed for rendering smoke mo...
Figure 1: Practical examples by our method (Top row, plume size is controlled while maintaining phys...
This paper addresses the problem of controlling the density and dynamics of smoke (a gas phenomenon)...
We present a method for real-time image based simulation of gaseous material such as fire and smoke....
This article addresses the problem of controlling the density and dynamics of smoke (a gas phenomeno...
Figure 1: Our mid-level fluid control system allows artists to specify local smoke behavior by provi...
Simulating fluids based on vortex filaments is highly attractive for the creation of special effects...