Time-Dependent 2-D Vector Field Topology: An Approach Inspired by Lagrangian Coherent Structures
F. Sadlo, D. Weiskopf
In Computer Graphics Forum, 29(1), 2010.
Abstract: This paper presents an approach to a time-dependent variant of the concept of vector field topology for 2-D vector fields. Vector field topology is defined for steady vector fields and aims at discriminating the domain of a vector field into regions of qualitatively different behaviour. The presented approach represents a generalization for saddle-type critical points and their separatrices to unsteady vector fields based on generalized streak lines, with the classical vector field topology as its special case for steady vector fields. The concept is closely related to that of Lagrangian coherent structures obtained as ridges in the finite-time Lyapunov exponent field. The proposed approach is evaluated on both 2-D time-dependent synthetic and vector fields from computational fluid dynamics.
Keyword(s): Computer Graphics [I.3.8]: Applications—Physical Sciences and Engineering, [J.2]: Physics—Simulation, Modeling, and Visualization [I.6.9]: Visualization
Article URL: http://dx.doi.org/10.1111/j.1467-8659.2009.01546.x
BibTeX format:
@article{CGF:CGF1546,
  author = {F. Sadlo and D. Weiskopf},
  title = {Time-Dependent 2-D Vector Field Topology: An Approach Inspired by Lagrangian Coherent Structures},
  journal = {Computer Graphics Forum},
  volume = {29},
  number = {1},
  pages = {88--100},
  year = {2010},
}
Search for more articles by F. Sadlo.
Search for more articles by D. Weiskopf.

Return to the search page.


graphbib: Powered by "bibsql" and "SQLite3."