• DocumentCode
    2413716
  • Title

    Visual analysis and exploration of fluid flow in a cooling jacket

  • Author

    Laramee, Robert S. ; Garth, Christoph ; Doleisch, Helmut ; Schneider, Jurgen ; Hauser, Helwig ; Hagen, Hans

  • Author_Institution
    VRVis Res. Center, Vienna, Austria
  • fYear
    2005
  • fDate
    23-28 Oct. 2005
  • Firstpage
    623
  • Lastpage
    630
  • Abstract
    We present a visual analysis and exploration of fluid flow through a cooling jacket. Engineers invest a large amount of time and serious effort to optimize the flow through this engine component because of its important role in transferring heat away from the engine block. In this study we examine the design goals that engineers apply in order to construct an ideal-as-possible cooling jacket geometry and use a broad range of visualization tools in order to analyze, explore, and present the results. We systematically employ direct, geometric, and texture-based flow visualization techniques as well as automatic feature extraction and interactive feature-based methodology. And we discuss the relative advantages and disadvantages of these approaches as well as the challenges, both technical and perceptual with this application. The result is a feature-rich state-of-the-art flow visualization analysis applied to an important and complex data set from real-world computational fluid dynamics simulations.
  • Keywords
    computational fluid dynamics; computational geometry; engines; feature extraction; flow visualisation; heat transfer; image texture; automatic feature extraction; computational fluid dynamics simulations; cooling jacket geometry; engine component; fluid flow exploration; interactive feature-based methodology; texture-based flow visualization techniques; visual analysis; Computational fluid dynamics; Computational modeling; Cooling; Data visualization; Design engineering; Feature extraction; Fluid flow; Geometry; Heat engines; Heat transfer;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Visualization, 2005. VIS 05. IEEE
  • Print_ISBN
    0-7803-9462-3
  • Type

    conf

  • DOI
    10.1109/VISUAL.2005.1532850
  • Filename
    1532850