International audienceThis paper presents a real-time method to animate complex scenes of thousands of trees under a user-controllable wind load. Firstly, modal analysis is applied to extract the main modes of deformation from the mechanical model of a 3D tree. The novelty of our contribution is to precompute a new basis of the modal stress of the tree under wind load. At runtime, this basis allows to replace the modal projection of the external forces by a direct mapping for any directional wind. We show that this approach can be efficiently implemented on graphics hardware. This modal animation can be simulated at low computation cost even for large scenes containing thousands of trees
In this paper, we propose a simple method to animate vegetation in images. The proposed method enabl...
This paper introduces a technique for rendering animated grass in real time. The technique uses fron...
We present a novel method for combining developmental tree models with turbulent wind fields. The tr...
International audienceThis paper presents a real-time method to animate complex scenes of thousands ...
Vegetation is present all around us and we are accustomed to see trees and other plants everyday. It...
Creating models of living flora, such as trees and grass, has been a challenge in computer graphics ...
Real-time simulation of natural phenomena is an area of interest for many groups, including computer...
International audienceThis paper presents a method for animating and rendering an interactive natura...
AbstractVisualization of 3D landscape scenes is often used in architectural modeling systems, realis...
In this paper, we propose a particle-based simulation method to create the animations of swaying and...
AbstractThis paper introduces the theory about tree modeling and dynamic movements simulation in com...
International audienceThe complexity of animating trees, shrubs and foliage is an impediment to the ...
Real-time animation of vegetation (a field of plants), e.g., grass, shrubs, and trees, has many appl...
Producing realistic vegetation is an important challenge in interactive applications. Most mod-eling...
In this paper, we propose a particle-based simulation method to create the animations of swaying and...
In this paper, we propose a simple method to animate vegetation in images. The proposed method enabl...
This paper introduces a technique for rendering animated grass in real time. The technique uses fron...
We present a novel method for combining developmental tree models with turbulent wind fields. The tr...
International audienceThis paper presents a real-time method to animate complex scenes of thousands ...
Vegetation is present all around us and we are accustomed to see trees and other plants everyday. It...
Creating models of living flora, such as trees and grass, has been a challenge in computer graphics ...
Real-time simulation of natural phenomena is an area of interest for many groups, including computer...
International audienceThis paper presents a method for animating and rendering an interactive natura...
AbstractVisualization of 3D landscape scenes is often used in architectural modeling systems, realis...
In this paper, we propose a particle-based simulation method to create the animations of swaying and...
AbstractThis paper introduces the theory about tree modeling and dynamic movements simulation in com...
International audienceThe complexity of animating trees, shrubs and foliage is an impediment to the ...
Real-time animation of vegetation (a field of plants), e.g., grass, shrubs, and trees, has many appl...
Producing realistic vegetation is an important challenge in interactive applications. Most mod-eling...
In this paper, we propose a particle-based simulation method to create the animations of swaying and...
In this paper, we propose a simple method to animate vegetation in images. The proposed method enabl...
This paper introduces a technique for rendering animated grass in real time. The technique uses fron...
We present a novel method for combining developmental tree models with turbulent wind fields. The tr...