• DocumentCode
    2361091
  • Title

    A texture-based framework for spacetime-coherent visualization of time-dependent vector fields

  • Author

    Weiskopf, Daniel ; Erlebacher, Gordon ; Ertl, Thomas

  • Author_Institution
    Inst. of Visualization & Interactive Syst., Stuttgart Univ., Germany
  • fYear
    2003
  • fDate
    24-24 Oct. 2003
  • Firstpage
    107
  • Lastpage
    114
  • Abstract
    We propose unsteady flow advection-convolution (UFAC) as a novel visualization approach for unsteady flows. It performs time evolution governed by pathlines, but builds spatial correlation according to instantaneous streamlines whose spatial extent is controlled by the flow unsteadiness. UFAC is derived from a generic framework that provides spacetime-coherent dense representations of time dependent-vector fields by a two-step process: 1) construction of continuous trajectories in spacetime for temporal coherence; and 2) convolution along another set of paths through the above spacetime for spatially correlated patterns. Within the framework, known visualization techniques-such as Lagrangian-Eulerian advection, image-based flow visualization, unsteady flow LIC, and dynamic LIC-can be reproduced, often with better image quality, higher performance, or increased flexibility of the visualization style. Finally, we present a texture-based discretization of the framework and its interactive implementation on graphics hardware, which allows the user to gradually balance visualization speed against quality.
  • Keywords
    data visualisation; flow visualisation; image processing; Lagrangian-Eulerian advection; dynamic LIC; graphics hardware; hardware acceleration; image quality; image-based flow visualization; spacetime-coherent visualization; spatial correlation; temporal coherence; texture advection; texture-based discretization; time evolution; time-dependent vector fields; unsteady flow LIC; unsteady flow advection-convolution; Aerodynamics; Computer graphics; Convolution; Hardware; Image quality; Information technology; Interactive systems; Lagrangian functions; Spatial coherence; Visualization;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Visualization, 2003. VIS 2003. IEEE
  • Conference_Location
    Seattle, WA, USA
  • Print_ISBN
    0-7803-8120-3
  • Type

    conf

  • DOI
    10.1109/VISUAL.2003.1250361
  • Filename
    1250361