Title :
Efficient High-Quality Volume Rendering of SPH Data
Author :
Fraedrich, Roland ; Auer, Stefan ; Westermann, Rüdiger
Author_Institution :
Comput. Graphics & Visualization Group, Tech. Univ. at Munchen, München, Germany
Abstract :
High quality volume rendering of SPH data requires a complex order-dependent resampling of particle quantities along the view rays. In this paper we present an efficient approach to perform this task using a novel view-space discretization of the simulation domain. Our method draws upon recent work on GPU-based particle voxelization for the efficient resampling of particles into uniform grids. We propose a new technique that leverages a perspective grid to adaptively discretize the view-volume, giving rise to a continuous level-of-detail sampling structure and reducing memory requirements compared to a uniform grid. In combination with a level-of-detail representation of the particle set, the perspective grid allows effectively reducing the amount of primitives to be processed at run-time. We demonstrate the quality and performance of our method for the rendering of fluid and gas dynamics SPH simulations consisting of many millions of particles.
Keywords :
coprocessors; hydrodynamics; rendering (computer graphics); GPU; complex order-dependent resampling; fluid rendering; particle resampling; particle voxelization; smoothed particle hydrodynamics; view-space discretization; volume rendering; Adaptation model; Graphics processing unit; Interpolation; Kernel; Rendering (computer graphics); Slabs; Three dimensional displays; GPU resampling; Particle visualization; ray-casting; volume rendering;
Journal_Title :
Visualization and Computer Graphics, IEEE Transactions on
DOI :
10.1109/TVCG.2010.148