DocumentCode
2412156
Title
Exploring 2D tensor fields using stress nets
Author
Wilson, Andrew ; Brannon, Rebecca
Author_Institution
Sandia Nat. Labs., Albuquerque, NM, USA
fYear
2005
fDate
23-28 Oct. 2005
Firstpage
11
Lastpage
18
Abstract
In this article we describe stress nets, a technique for exploring 2D tensor fields. Our method allows a user to examine simultaneously the tensors´ eigenvectors (both major and minor) as well as scalar-valued tensor invariants. By avoiding noise-advection techniques, we are able to display both principal directions of the tensor field as well as the derived scalars without cluttering the display. We present a CPU-only implementation of stress nets as well as a hybrid CPU/GPU approach and discuss the relative strengths and weaknesses of each. Stress nets have been used as part of an investigation into crack propagation. They were used to display the directions of maximum shear in a slab of material under tension as well as the magnitude of the shear forces acting on each point. Our methods allowed users to find new features in the data that were not visible on standard plots of tensor invariants. These features disagree with commonly accepted analytical crack propagation solutions and have sparked renewed investigation. Though developed for a materials mechanics problem, our method applies equally well to any 2D tensor field having unique characteristic directions.
Keywords
cracks; data visualisation; physics computing; stress analysis; tensors; 2D tensor field; crack propagation; hybrid CPU approach; hybrid GPU approach; noise-advection techniques; shear forces; stress nets; Capacitive sensors; Chromium; Data mining; Data visualization; Displays; Laboratories; Occupational stress; Slabs; Streaming media; Tensile stress;
fLanguage
English
Publisher
ieee
Conference_Titel
Visualization, 2005. VIS 05. IEEE
Print_ISBN
0-7803-9462-3
Type
conf
DOI
10.1109/VISUAL.2005.1532771
Filename
1532771
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