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Published in: Journal of Visualization 4/2018

10-02-2018 | Regular Paper

A user-friendly interactive framework for unsteady fluid flow segmentation and visualization

Authors: Danilo Motta, Wallace Casaca, Paulo Pagliosa, Afonso Paiva

Published in: Journal of Visualization | Issue 4/2018

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Abstract

While vector fields are essential to simulate a large amount of natural phenomena, the difficulty to identify patterns and predict behaviors makes the visual segmentation in simulations an attractive and powerful tool. In this paper, we present a novel user-steered segmentation framework to cope with steady as well as unsteady vector fields on fluid flow simulations. Given a discrete vector field, our approach extracts multi-valued features from the field by exploiting its streamline structures so that these features are mapped to a visual space through a multidimensional projection technique. From an easy-to-handle interface, the user can interact with the projected data so as to partition and explore the most relevant vector features in a guidance frame of the simulation. Besides navigating and visually mining structures of interest, the interactivity with the projected data also allows the user to progressively enhance the segmentation result according to his insights. Finally, to successfully deal with unsteady simulations, the segments previously annotated by the user are used as a training set for a Support Vector Machine approach that classifies the remaining frames in the flow. We attest the effectiveness and versatility of our methodology throughout a set of classical physical-inspired applications on fluid flow simulations as depicted in the experiment results section.

Graphical Abstract

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Footnotes
1
 
Literature
go back to reference Berkooz G, Holmes P, Lumley JL (1993) The proper orthogonal decomposition in the analysis of turbulent flows. Annu Rev Fluid Mech 25:539–575MathSciNetCrossRef Berkooz G, Holmes P, Lumley JL (1993) The proper orthogonal decomposition in the analysis of turbulent flows. Annu Rev Fluid Mech 25:539–575MathSciNetCrossRef
go back to reference Bhatia H, Jadhav S, Pascucci V, Chen G, Levine JA, Nonato LG, Bremer PT (2011) Edge maps: representing flow with bounded error. IEEE Pacific Vis 2011:75–82 Bhatia H, Jadhav S, Pascucci V, Chen G, Levine JA, Nonato LG, Bremer PT (2011) Edge maps: representing flow with bounded error. IEEE Pacific Vis 2011:75–82
go back to reference Bhatia H, Jadhav S, Pascucci V, Chen G, Levine JA, Nonato LG, Bremer PT (2012) Flow visualization with quantified spatial and temporal errors using edge maps. IEEE Trans Vis Comput Graph 18(9):1383–1396CrossRef Bhatia H, Jadhav S, Pascucci V, Chen G, Levine JA, Nonato LG, Bremer PT (2012) Flow visualization with quantified spatial and temporal errors using edge maps. IEEE Trans Vis Comput Graph 18(9):1383–1396CrossRef
go back to reference Daniels J II, Anderson E, Nonato L, Silva C (2010) Interactive vector field feature identification. IEEE Trans Vis Comput Graph 16(6):1560–1568CrossRef Daniels J II, Anderson E, Nonato L, Silva C (2010) Interactive vector field feature identification. IEEE Trans Vis Comput Graph 16(6):1560–1568CrossRef
go back to reference Dietterich TG, Bakiri G (1995) Solving multiclass learning problems via error-correcting output codes. J Artif Intell Res 2:263–286MATH Dietterich TG, Bakiri G (1995) Solving multiclass learning problems via error-correcting output codes. J Artif Intell Res 2:263–286MATH
go back to reference Ferreira N, Klosowski J, Scheidegger C, Silva C (2013) Vector field k-means: clustering trajectories by fitting multiple vector fields. Comput Graph Forum 32:201–210CrossRef Ferreira N, Klosowski J, Scheidegger C, Silva C (2013) Vector field k-means: clustering trajectories by fitting multiple vector fields. Comput Graph Forum 32:201–210CrossRef
go back to reference von Funck W, Weinkauf T, Theisel H, Seidel HP (2008) Smoke surfaces: An interactive flow visualization technique inspired by real-world flow experiments. IEEE Trans Vis Comput Graph 14(6):1396–1403CrossRef von Funck W, Weinkauf T, Theisel H, Seidel HP (2008) Smoke surfaces: An interactive flow visualization technique inspired by real-world flow experiments. IEEE Trans Vis Comput Graph 14(6):1396–1403CrossRef
go back to reference Garcia D (2010) Robust smoothing of gridded data in one and higher dimensions with missing values. Comput Stat Data Anal 54(4):1167–1178MathSciNetCrossRefMATH Garcia D (2010) Robust smoothing of gridded data in one and higher dimensions with missing values. Comput Stat Data Anal 54(4):1167–1178MathSciNetCrossRefMATH
go back to reference Joia P, Coimbra D, Cuminato JA, Paulovich FV, Nonato LG (2011) Local affine multidimensional projection. IEEE Trans Vis Comput Graph 17(12):2563–2571CrossRef Joia P, Coimbra D, Cuminato JA, Paulovich FV, Nonato LG (2011) Local affine multidimensional projection. IEEE Trans Vis Comput Graph 17(12):2563–2571CrossRef
go back to reference Kuhn A, Lehmann DJ, Gaststeiger R, Neugebauer M, Preim B, Theisel H (2011) A clustering-based visualization technique to emphasize meaningful regions of vector fields. Vis Model Vis 2011:191–198 Kuhn A, Lehmann DJ, Gaststeiger R, Neugebauer M, Preim B, Theisel H (2011) A clustering-based visualization technique to emphasize meaningful regions of vector fields. Vis Model Vis 2011:191–198
go back to reference Laramee R, Hauser H, Zhao L, Post F (2007) Topology-based flow visualization, the state of the art. In: Topology-based methods in visualization, mathematics and visualization, pp 1–19. Springer (2007) Laramee R, Hauser H, Zhao L, Post F (2007) Topology-based flow visualization, the state of the art. In: Topology-based methods in visualization, mathematics and visualization, pp 1–19. Springer (2007)
go back to reference Li H, Chen W, Shen IF (2006) Segmentation of discrete vector fields. IEEE Trans Vis Comput Graph 12(3):289–300CrossRef Li H, Chen W, Shen IF (2006) Segmentation of discrete vector fields. IEEE Trans Vis Comput Graph 12(3):289–300CrossRef
go back to reference Mahrous K, Bennett J, Scheuermann G, Hamann B, Joy KI (2004) Topological segmentation in three-dimensional vector fields. IEEE Trans Vis Comput Graph 10(2):198–205CrossRef Mahrous K, Bennett J, Scheuermann G, Hamann B, Joy KI (2004) Topological segmentation in three-dimensional vector fields. IEEE Trans Vis Comput Graph 10(2):198–205CrossRef
go back to reference McLoughlin T, Jones MW, Laramee RS, Malki R, Masters I, Hansen CD (2012) Similarity measures for enhancing interactive streamline seeding. IEEE Trans Vis Comput Graph 99:1–1 McLoughlin T, Jones MW, Laramee RS, Malki R, Masters I, Hansen CD (2012) Similarity measures for enhancing interactive streamline seeding. IEEE Trans Vis Comput Graph 99:1–1
go back to reference Motta D, Oliveira M, Pagliosa P, Nonato LG, Paiva A (2015) Exploratory segmentation of vector fields using multidimensional projection. In: Sibgrapi 2015 (28th conference on graphics, patterns and images), pp 250–256 Motta D, Oliveira M, Pagliosa P, Nonato LG, Paiva A (2015) Exploratory segmentation of vector fields using multidimensional projection. In: Sibgrapi 2015 (28th conference on graphics, patterns and images), pp 250–256
go back to reference Popinet S (2003) Gerris: a tree-based adaptive solver for the incompressible Euler equations in complex geometries. J Comput Phys 190(2):572–600MathSciNetCrossRefMATH Popinet S (2003) Gerris: a tree-based adaptive solver for the incompressible Euler equations in complex geometries. J Comput Phys 190(2):572–600MathSciNetCrossRefMATH
go back to reference Post FH, Vrolijk B, Hauser H, Laramee RS, Doleisch H (2002) Feature extraction and visualization of flow fields. In: Eurographics 2002 STAR, pp 69–100 Post FH, Vrolijk B, Hauser H, Laramee RS, Doleisch H (2002) Feature extraction and visualization of flow fields. In: Eurographics 2002 STAR, pp 69–100
go back to reference Rossl C, Theisel H (2012) Streamline embedding for 3D vector field exploration. IEEE Trans Vis Comput Graph 18(3):407–420CrossRef Rossl C, Theisel H (2012) Streamline embedding for 3D vector field exploration. IEEE Trans Vis Comput Graph 18(3):407–420CrossRef
go back to reference Sternberg SZ, Loomis LH (2014) Advanced calculus, revised edn. World Scientific Publishing Company, SingaporeMATH Sternberg SZ, Loomis LH (2014) Advanced calculus, revised edn. World Scientific Publishing Company, SingaporeMATH
go back to reference Zhang L, Chen G, Laramee RS, Thompson D, Sescu A (2016) Flow visualization based on a derived rotation field. Electron Imaging 2016(1):1–10 Zhang L, Chen G, Laramee RS, Thompson D, Sescu A (2016) Flow visualization based on a derived rotation field. Electron Imaging 2016(1):1–10
go back to reference Zhang L, Laramee RS, Thompson D, Sescu A, Chen G (2016b) An integral curve attribute based flow segmentation. J Vis 19(3):423–436CrossRef Zhang L, Laramee RS, Thompson D, Sescu A, Chen G (2016b) An integral curve attribute based flow segmentation. J Vis 19(3):423–436CrossRef
Metadata
Title
A user-friendly interactive framework for unsteady fluid flow segmentation and visualization
Authors
Danilo Motta
Wallace Casaca
Paulo Pagliosa
Afonso Paiva
Publication date
10-02-2018
Publisher
Springer Berlin Heidelberg
Published in
Journal of Visualization / Issue 4/2018
Print ISSN: 1343-8875
Electronic ISSN: 1875-8975
DOI
https://doi.org/10.1007/s12650-018-0474-6

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