Feature Tracking Using Reeb Graphs View Full Text


Ontology type: schema:Chapter      Open Access: True


Chapter Info

DATE

2010-09-14

AUTHORS

Gunther Weber , Peer-Timo Bremer , Marcus Day , John Bell , Valerio Pascucci

ABSTRACT

Tracking features and exploring their temporal dynamics can aid scientists in identifying interesting time intervals in a simulation and serve as basis for performing quantitative analyses of temporal phenomena. In this paper, we develop a novel approach for tracking subsets of isosurfaces, such as burning regions in simulated flames, which are defined as areas of high fuel consumption on a temperature isosurface. Tracking such regions as they merge and split over time can provide important insights into the impact of turbulence on the combustion process. However, the convoluted nature of the temperature isosurface and its rapid movement make this analysis particularly challenging. Our approach tracks burning regions by extracting a temperature isovolume from the four-dimensional space-time temperature field. It then obtains isosurfaces for the original simulation time steps and labels individual connected “burning” regions based on the local fuel consumption value. Based on this information, a boundary surface between burning and non-burning regions is constructed. TheReeb graph of this boundary surface is thetracking graph for burning regions. More... »

PAGES

241-253

References to SciGraph publications

  • 2009. Isocontour based Visualization of Time-varying Scalar Fields in MATHEMATICAL FOUNDATIONS OF SCIENTIFIC VISUALIZATION, COMPUTER GRAPHICS, AND MASSIVE DATA EXPLORATION
  • 2002-11. Topological Persistence and Simplification in DISCRETE & COMPUTATIONAL GEOMETRY
  • 2006-12. Extreme Elevation on a 2-Manifold in DISCRETE & COMPUTATIONAL GEOMETRY
  • Book

    TITLE

    Topological Methods in Data Analysis and Visualization

    ISBN

    978-3-642-15013-5
    978-3-642-15014-2

    Identifiers

    URI

    http://scigraph.springernature.com/pub.10.1007/978-3-642-15014-2_20

    DOI

    http://dx.doi.org/10.1007/978-3-642-15014-2_20

    DIMENSIONS

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