DocumentCode
1556592
Title
On Mesh-Free Valley Surface Extraction with Application to Low Frequency Sound Simulation
Author
Obermaier, Harald ; Mohring, Jan ; Deines, Eduard ; Hering-Bertram, Martin ; Hagen, Hans
Author_Institution
Univ. of California Davis, Davis, CA, USA
Volume
18
Issue
2
fYear
2012
Firstpage
270
Lastpage
282
Abstract
Crease surfaces describe extremal structures of 3D scalar fields. We present a new region-growing-based approach to the meshless extraction of adaptive nonmanifold valley and ridge surfaces that overcomes limitations of previous approaches by decoupling point seeding and triangulation of the surface. Our method is capable of extracting valley surface skeletons as connected minimum structures. As our algorithm is inherently mesh-free and curvature adaptive, it is suitable for surface construction in fields with an arbitrary neighborhood structure. As an application for insightful visualization with valley surfaces, we choose a low frequency acoustics simulation. We use our valley surface construction approach to visualize the resulting complex-valued scalar pressure field for arbitrary frequencies to identify regions of sound cancellation. This provides an expressive visualization of the topology of wave node and antinode structures in simulated acoustics.
Keywords
acoustic noise; data visualisation; feature extraction; mesh generation; 3D scalar fields; acoustic simulation; adaptive nonmanifold valley; crease surface; decoupling point seeding; meshless extraction; region growing based approach; ridge surfaces; sound cancellation; triangulation; valley surface construction approach; valley surface extraction; visualization; Acoustics; Data visualization; Linear approximation; Polynomials; Surface reconstruction; Surface treatment; Valley; acoustics; adaptive surface; complex-valued scalar field.; crease; meshing; ridge;
fLanguage
English
Journal_Title
Visualization and Computer Graphics, IEEE Transactions on
Publisher
ieee
ISSN
1077-2626
Type
jour
DOI
10.1109/TVCG.2011.98
Filename
5887325
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