Flow visualization has been a very attractive component of scientific visualization research for a long time. Usually very large multivariate datasets require processing. These datasets often consist of a large number of sample locations and several time steps. The steadily increasing performance of computers has recently become a driving factor for a reemergence in flow visualization research, especially in texture-based techniques. In this paper, dense, texture-based flow visualization techniques are discussed. This class of techniques attempts to provide a complete, dense representation of the flow field with high spatio-temporal coherency. An attempt of categorizing closely related solutions is incorporated and presented. Fundamentals are shortly addressed as well as advantages and disadvantages of the methods.
Description
The State of the Art in Flow Visualization: Dense and Texture-Based Techniques - Laramee - 2004 - Computer Graphics Forum - Wiley Online Library
%0 Journal Article
%1 CGF:CGF753
%A Laramee, Robert S.
%A Hauser, Helwig
%A Doleisch, Helmut
%A Vrolijk, Benjamin
%A Post, Frits H.
%A Weiskopf, Daniel
%D 2004
%I Blackwell Publishing Ltd.
%J Computer Graphics Forum
%K flow_topology graphics motion_analysis visualization
%N 2
%P 203--221
%R 10.1111/j.1467-8659.2004.00753.x
%T The State of the Art in Flow Visualization: Dense and Texture-Based Techniques
%U http://dx.doi.org/10.1111/j.1467-8659.2004.00753.x
%V 23
%X Flow visualization has been a very attractive component of scientific visualization research for a long time. Usually very large multivariate datasets require processing. These datasets often consist of a large number of sample locations and several time steps. The steadily increasing performance of computers has recently become a driving factor for a reemergence in flow visualization research, especially in texture-based techniques. In this paper, dense, texture-based flow visualization techniques are discussed. This class of techniques attempts to provide a complete, dense representation of the flow field with high spatio-temporal coherency. An attempt of categorizing closely related solutions is incorporated and presented. Fundamentals are shortly addressed as well as advantages and disadvantages of the methods.
@article{CGF:CGF753,
abstract = {Flow visualization has been a very attractive component of scientific visualization research for a long time. Usually very large multivariate datasets require processing. These datasets often consist of a large number of sample locations and several time steps. The steadily increasing performance of computers has recently become a driving factor for a reemergence in flow visualization research, especially in texture-based techniques. In this paper, dense, texture-based flow visualization techniques are discussed. This class of techniques attempts to provide a complete, dense representation of the flow field with high spatio-temporal coherency. An attempt of categorizing closely related solutions is incorporated and presented. Fundamentals are shortly addressed as well as advantages and disadvantages of the methods.},
added-at = {2014-09-29T09:40:58.000+0200},
author = {Laramee, Robert S. and Hauser, Helwig and Doleisch, Helmut and Vrolijk, Benjamin and Post, Frits H. and Weiskopf, Daniel},
biburl = {https://www.bibsonomy.org/bibtex/234c94d8b08c26a218064ec20a46e870f/alex_ruff},
description = {The State of the Art in Flow Visualization: Dense and Texture-Based Techniques - Laramee - 2004 - Computer Graphics Forum - Wiley Online Library},
doi = {10.1111/j.1467-8659.2004.00753.x},
interhash = {0e7578ddaad75e3e82ae071745ba4075},
intrahash = {34c94d8b08c26a218064ec20a46e870f},
issn = {1467-8659},
journal = {Computer Graphics Forum},
keywords = {flow_topology graphics motion_analysis visualization},
number = 2,
pages = {203--221},
publisher = {Blackwell Publishing Ltd.},
timestamp = {2014-09-29T09:40:58.000+0200},
title = {The State of the Art in Flow Visualization: Dense and Texture-Based Techniques},
url = {http://dx.doi.org/10.1111/j.1467-8659.2004.00753.x},
volume = 23,
year = 2004
}