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Articles

Computer animation challenges for computational fluid dynamics

, &
Pages 407-434 | Received 27 Mar 2012, Accepted 08 Aug 2012, Published online: 30 Oct 2012

References

  • Adams, B., et al., 2007. Adaptively sampled particle fluids, ACM Transactions on Graphics 26 (3) (2007), pp. 48:1–48:8.
  • Akinci, N., et al., 2012. Versatile rigid-fluid coupling for incompressible SPH. ACM Transactions on Graphics, 31 (4), 62:1–62:8.
  • Amador, G., and Gomes, A., 2010. A CUDA-based implementation of stable fluids in 3D with internal and moving boundaries. Presented at Proceedings of the 2010 international conference on computational science and its applications, ICCSA'10.
  • Angelidis, A., et al., 2006. A controllable, fast and stable basis for vortex based smoke simulation. Presented at Proceedings of the 2006 ACM SIGGRAPH/Eurographics symposium on computer animation, SCA '06. 2–4, September.
  • Bao, K., et al., 2010. Volume fraction based miscible and immiscible fluid animation, Computer Animation & Virtual Worlds 21 (2010), pp. 401–410.
  • Bargteil, A.W., et al., 2006. A semi-Lagrangian contouring method for fluid simulation, ACM Transactions on Graphics 25 (1) (2006), pp. 19–38.
  • Batty, C., and Bridson, R., 2008. Accurate viscous free surfaces for buckling, coiling, and rotating liquids. Presented at Proceedings of the 2008 ACM SIGGRAPH/Eurographics symposium on computer animation, SCA '08. 7–9, July.
  • Batty, C., Xenos, S., and Houston, B., 2010. Tetrahedral embedded boundary methods for accurate and flexible adaptive fluids, Computer Graphics Forum 29 (2) (2010), pp. 695–704.
  • Batty, C., R., 2007. A fast variational framework for accurate solid–fluid coupling, ACM Transactions on Graphics 26 (3) (2007), pp. 100:1–100:8.
  • Baxter, W., and Lin, M.C., 2004. Haptic interaction with fluid media. Presented at Proceedings of graphics interface 2004, GI '04.
  • Beaudoin, P., Paquet, S., and Poulin, P., 2001. Realistic and controllable fire simulation. Presented at Graphics Interface 2001, GRIN'01. 7–9 June.
  • Becker, M., and Teschner, M., 2007. Weakly compressible SPH for free surface flows. Presented at Proceedings of the 2007 ACM SIGGRAPH/Eurographics symposium on computer animation, SCA '07. 3–4, August.
  • Blasi, P., Le Saec, B., and Schlick, C., 1993. A rendering algorithm for discrete volume density objects, Computer Graphics Forum 12 (3) (1993), pp. 201–210.
  • Bridault, F., et al., 2007. Real-time rendering and animation of plentiful flames. Presented at Proceedings of the Eurographics workshop on natural phenomena, NPH 2007. September.
  • Bridson, R., 2008. Fluid simulation for computer graphics. Natick, MA: A.K. Peters; 2008.
  • Bridson, R., Houriham, J., and Nordenstam, M., 2007. Curl-noise for procedural fluid flow, ACM Transactions on Graphics 26 (3) (2007), pp. 46:1–46:4.
  • Brochu, T., Batty, C., and Bridson, R., 2010. Matching fluid simulation elements to surface geometry and topology, ACM Transactions on Graphics 29 (4) (2010), p. 47, 1–47:9.
  • Carlson, M., Mucha, P.J., and Turk, G., 2004. Rigid fluid: animating the interplay between rigid bodies and fluid, ACM Transactions on Graphics 23 (3) (2004), pp. 377–384.
  • Carlson, M., et al., 2002. Melting and flowing. Presented at Proceedings of the 2002 ACM SIGGRAPH/Eurographics symposium on computer animation, SCA '02. 21–22, July.
  • Chen, S., and Doolen, G.D., 1998. Lattice Boltzmann method for fluid flows, Annual Review of Fluid Mechanics 30 (1998), pp. 329–364.
  • Chentanez, N., and Müller, M., 2010. Real-time simulation of large bodies of water with small scale details. Presented at Proceedings of the 2010 ACM SIGGRAPH/Eurographics symposium on computer animation, SCA '10. 2–4, July.
  • Chentanez, N., and Müller, M., 2011. Real-time Eulerian water simulation using a restricted tall cell grid, ACM Transactions on Graphics 30 (4) (2011), p. 82, 1–82:10.
  • Chentanez, N., et al., 2006. Simultaneous coupling of fluids and deformable bodies. Presented at Proceedings of the 2006 ACM SIGGRAPH/Eurographics symposium on computer animation, SCA '06. 2–4, September.
  • Chentanez, N., et al., 2007. Liquid simulation on lattice-based tetrahedral meshes. Presented at Proceedings of the 2007 ACM SIGGRAPH/Eurographics symposium on computer animation, SCA '07. 3–4, August.
  • Chiu, Y.F., and Chang, C.F., 2006. GPU-based ocean rendering. Presented at 2006 IEEE international conference on multimedia and expo. 9–12, July.
  • Chu, N.S.H., and Tai, C.L., 2005. MoXi: real-time ink dispersion in absorbent paper, ACM Transactions on Graphics 24 (3) (2005), pp. 504–511.
  • Cieutat, J.M., Gonzato, J.C., and Guitton, P., 2003. A general ocean waves model for ship design. Presented at Proceedings of virtual concept.
  • Crane, K., Llamas, I., and Tariq, S., 2007. Real time simulation and rendering of 3D fluids. Presented at GPUGems 3, chap. 30.
  • Desbrun, M., and Cani, M.P., 1996. Smoothed particles: A new paradigm for animating highly deformable bodies. Presented at Eurographics workshop on computer animation and simulation (EGCAS). August, Published under the name Marie-Paule Gascuel.
  • Dobashi, Y., et al., 2006. A fluid resistance map method for real-time haptic interaction with fluids. Presented at Proceedings of the ACM symposium on virtual reality software and technology, VRST '06. 1–3, November.
  • Elcott, S., et al., 2007. Stable, circulation-preserving, simplicial fluids, ACM Transactions on Graphics 26 (1) (2007), pp. 4:1–4:12.
  • Enright, D., Marschner, S., and Fedkiw, R., 2002. Animation and rendering of complex water surfaces, ACM Transactions on Graphics 21 (3) (2002), pp. 736–744.
  • Fattal, R., and Lischinski, D., 2004. Target-driven smoke animation, ACM Transactions on Graphics 23 (3) (2004), pp. 441–448.
  • Fedkiw, R., Stam, J., and Jensen, H.W., 2001. Visual simulation of smoke. Presented at Proceedings of the 28th annual conference on computer graphics and interactive techniques, SIGGRAPH '01.
  • Feldman, B.E., O'Brien, J.F., and Arikan, O., 2003. Animating suspended particle explosions, ACM Transactions on Graphics 22 (3) (2003), pp. 708–715.
  • Feldman, B.E., et al., 2005. Fluids in deforming meshes. Presented at Proceedings of the 2005 ACM SIGGRAPH/Eurographics symposium on computer animation, SCA '05. 29–31, July.
  • Foster, N., and Fedkiw, R., 2001. Practical animation of liquids. Presented at Proceedings of the 28th annual conference on computer graphics and interactive techniques, SIGGRAPH '01.
  • Foster, N., and Metaxas, D., 1996. Realistic animation of liquids, Graphic Models and Image Processing 58 (5) (1996), pp. 471–483.
  • Fournier, A., and Reeves, W.T., 1986. A simple model of ocean waves. Presented at Proceedings of the 13th annual conference on computer graphics and interactive techniques, SIGGRAPH '86.
  • Fraedrich, R., Auer, S., and Westermann, R., 2010. Efficient high-quality volume rendering of SPH data, IEEE Transactions on Visualization and Computer Graphics 16 (6) (2010), pp. 1533–1540.
  • Frisvad, J.R., Christensen, N.J., and Jensen, H.W., 2007. Computing the scattering properties of participating media using Lorenz-Mie theory, ACM Transactions on Graphics 26 (3) (2007), pp. 60:1–60:10.
  • Fuller, A.R., et al., 2007. Real-time procedural volumetric fire. Presented at Proceedings of the 2007 symposium on interactive 3D graphics and games, I3D '07. 29, April–2 May.
  • Gamito, M.N., Lopes, P.F., and Gomes, M.R., 1995. Two-dimensional simulation of gaseous phenomena using vortex particles. Presented at Proceedings of the 6th Eurographics workshop on computer animation and simulation.
  • Goswami, P., and Pajarola, R., 2011. Time adaptive approximate SPH. Presented at Proceedings of the 8th workshop on virtual reality interactions and physical simulations, VRIPHYS 2011.
  • Greenwood, S.T., and House, D.H., 2004. Better with bubbles: enhancing the visual realism of simulated fluid. Presented at Proceedings of the 2004 ACM SIGGRAPH/Eurographics symposium on computer animation, SCA '04. 27–29, August.
  • Guendelman, E., et al., 2005. Coupling water and smoke to thin deformable and rigid shells, ACM Transactions on Graphics 24 (3) (2005), pp. 973–981.
  • Harada, T., Koshizuka, S., and Kawaguchi, Y., 2007. Smoothed particle hydrodynamics on GPUs. Presented at Proceedings of computer graphics international.
  • Harris, M.J., et al., 2003. Simulation of cloud dynamics on graphics hardware. Presented at Proceedings of the ACM SIGGRAPH/EUROGRAPHICS conference on graphics hardware, HWWS '03. 26–27, July.
  • Hong, J.M., and Kim, C.H., 2005. Discontinuous fluids, ACM Transactions on Graphics 24 (3) (2005), pp. 915–920.
  • Hong, J.M., Shinar, T., and Fedkiw, R., 2007. Wrinkled flames and cellular patterns, ACM Transactions on Graphics 26 (3) (2007), pp. 47:1–47:6.
  • Hong, J.M., et al., 2008. Bubbles alive, ACM Transactions on Graphics 27 (3) (2008), p. 48, 1–48:4.
  • Horvath, C., and Geiger, W., 2009. Directable, high-resolution simulation of fire on the GPU, ACM Transactions on Graphics 28 (3) (2009), p. 41, 1–41:8.
  • Ihmsen, M., et al., 2011. Animation of air bubbles with SPH. Presented at GRAPP 2011 – Proceedings of the international conference on computer graphics theory and applications. 5–7, March.
  • Inacio, R.T., et al., 2010. Interactive simulation and visualization of fluids with surface raycasting. Presented at Proceedings of the 2010 23rd SIBGRAPI conference on graphics, patterns and images, SIBGRAPI '10.
  • Kang, N., et al., 2010. A hybrid approach to multiple fluid simulation using volume fractions, Computer Graphics Forum 29 (2) (2010), pp. 685–694.
  • Kass, M., and Miller, G., 1990. Rapid, stable fluid dynamics for computer graphics. Presented at Proceedings of the 17th annual conference on computer graphics and interactive techniques, SIGGRAPH '90. August.
  • Kim, B., et al., 2007. Advections with significantly reduced dissipation and diffusion, IEEE Transactions on Visualization and Computer Graphics 13 (1) (2007), pp. 135–144.
  • Kim, D., Song, O.y., and Ko, H.S., 2010. A practical simulation of dispersed bubble flow, ACM Transactions on Graphics 29 (4) (2010), p. 70, 1–70:5.
  • Kim, D., et al., 2012. Baroclinic turbulence with varying density and temperature, IEEE Transactions on Visualization and Computer Graphics 18 (9) (2012), 1488–1495.
  • Kim, J., et al., 2006. Practical animation of turbulent splashing water. Presented at Proceedings of the 2006 ACM SIGGRAPH/Eurographics symposium on computer animation, SCA '06. 2–4, September.
  • Kim, T., et al., 2008. Wavelet turbulence for fluid simulation, ACM Transactions on Graphics 27 (3) (2008), p. 50, 1–50:6.
  • Klingner, B.M., et al., 2006. Fluid animation with dynamic meshes, ACM Transactions on Graphics 25 (3) (2006), pp. 820–825.
  • Kwatra, N., et al., 2010. Fluid simulation with articulated bodies, IEEE Transactions on Visualization and Computer Graphics 16 (1) (2010), pp. 70–80.
  • Lamorlette, A., and Foster, N., 2002. Structural modeling of flames for a production environment, ACM Transactions on Graphics 21 (3) (2002), pp. 729–735.
  • Lapierre, S., Entezari, A., and Möller, T., 2003. Practicalities of Fourier-Domain Fluid Simulation. Technical report. Canada: Simon Fraser University; 2003.
  • Liu, Y., Liu, X., and Wu, E., 2004. Real-time 3D fluid simulation on GPU with complex obstacles. Presented at Proceedings of the computer graphics and applications, 12th Pacific conference, PG '04.
  • Long, B., and Reinhard, E., 2009. Real-time fluid simulation using discrete sine/cosine transforms. Presented at Proceedings of the 2009 symposium on interactive 3D graphics and games, I3D '09. 27 February–1 March.
  • Lorensen, W.E., and Cline, H.E., 1987. Marching cubes: A high resolution 3D surface construction algorithm. Presented at Proceedings of the 14th annual conference on computer graphics and interactive techniques, SIGGRAPH '87.
  • Losasso, F., Gibou, F., and Fedkiw, R., 2004. Simulating water and smoke with an octree data structure, ACM Transactions on Graphics 23 (3) (2004), pp. 457–462.
  • Losasso, F., et al., 2006a. Melting and burning solids into liquids and gases, IEEE Transactions on Visualization and Computer Graphics 12 (3) (2006a), pp. 343–352.
  • Losasso, F., et al., 2006b. Multiple interacting liquids, ACM Transactions on Graphics 25 (2006b), pp. 812–819.
  • Losasso, F., et al., 2008. Two-way coupled SPH and particle level set fluid simulation, IEEE Transactions on Visualization and Computer Graphics 14 (3) (2008), pp. 797–804.
  • McNamara, A., et al., 2004. Fluid control using the adjoint method, ACM Transactions on Graphics 23 (3) (2004), pp. 449–456.
  • Mihalef, V., Metaxas, D., and Sussman, M., 2009. Simulation of two-phase flow with sub-scale droplet and bubble effects, Computer Graphics Forum 28 (2) (2009), pp. 229–238.
  • Miklós, B., 2004. Real-time fluid simulation using height fields. Semester thesis. Zurich: Swiss Federal Institute of Technology; 2004.
  • Misztal, M.K., et al., 2010. Optimization-based fluid simulation on unstructured meshes. Presented at Proceedings of virtual reality interaction and physical simulation, VRIPHYS 2010.
  • Müller, M., et al., 2004a. Point based animation of elastic, plastic and melting objects. Presented at Proceedings of the 2004 ACM SIGGRAPH/Eurographics symposium on computer animation, SCA '04. 27–29, August.
  • Müller, M., Charypar, D., and Gross, M., 2003. Particle-based fluid simulation for interactive applications. Presented at Proceedings of the 2003 ACM SIGGRAPH/Eurographics symposium on computer animation, SCA '03.
  • Müller, M., et al., 2004b. Interaction of fluids with deformable solids: Research articles, Computer Animation & Virtual Worlds 15 (3–4) (2004b), pp. 159–171.
  • Narain, R., et al., 2008. Fast animation of turbulence using energy transport and procedural synthesis, ACM Transactions on Graphics 27 (5) (2008), p. 166, 1–166:8.
  • Neyret, F., 2003. Advected textures. Presented at Proceedings of the 2003 ACM SIGGRAPH/Eurographics symposium on computer animation, SCA '03. 26–27, July.
  • Nguyen, D.Q., Fedkiw, R., and Jensen, H.W., 2002. Physically based modeling and animation of fire, ACM Transactions on Graphics 21 (3) (2002), pp. 721–728.
  • Nielsen, M.B., and Bridson, R., 2011. Guide shapes for high resolution naturalistic liquid simulation, ACM Transactions on Graphics 30 (4) (2011), p. 83, 1–83:8.
  • Park, J., et al., 2008. A unified handling of immiscible and miscible fluids, Computer Animation & Virtual Worlds 19 (3–4) (2008), pp. 455–467.
  • Park, S.I., and Kim, M.J., 2005. Vortex fluid for gaseous phenomena. Presented at Proceedings of the 2005 ACM SIGGRAPH/Eurographics symposium on computer animation, SCA '05. 29–31, July.
  • Peachey, D.R., 1986. Modeling waves and surf. Presented at Proceedings of the 13th annual conference on computer graphics and interactive techniques, SIGGRAPH '86.
  • Pfaff, T., Thuerey, N., and Gross, M., 2012. Lagrangian vortex sheets for animating fluids, ACM Transactions on Graphics 31 (4) (2012), pp. 112:1–112:8.
  • Pfaff, T., et al., 2009. Synthetic turbulence using artificial boundary layers, ACM Transactions on Graphics 28 (5) (2009), p. 121, 1–121:10.
  • Premože, S., et al., 2003. Particle-based simulation of fluids, Computer Graphics Forum 22 (3) (2003), pp. 401–410.
  • Qian, Y.H., D'Humires, D., and Lallemand, P., 1992. Lattice BGK models for Navier–Stokes equation, EPL (Europhysics Letters) 17 (6) (1992), p. 479.
  • Raveendran, K., Wojtan, C., and Turk, G., 2011. Hybrid smoothed particle hydrodynamics. Presented at Proceedings of the 2011 ACM SIGGRAPH/Eurographics symposium on computer animation, SCA '11. 5–6, August, British Columbia.
  • Robinson-Mosher, A., et al., 2008. Two-way coupling of fluids to rigid and deformable solids and shells, ACM Transactions on Graphics 27 (3) (2008), p. 46, 1–46:9.
  • Sadlo, F., Peikert, R., and Sick, M., 2006. Visualization tools for vorticity transport analysis in incompressible flow, IEEE Transactions on Visualization and Computer Graphics 12 (5) (2006), pp. 949–956.
  • Selle, A., Rasmussen, N., and Fedkiw, R., 2005. A vortex particle method for smoke, water and explosions, ACM Transactions on Graphics 24 (3) (2005), pp. 910–914.
  • Sethian, J.A., 1999. Fast marching methods, SIAM Review 41 (2) (1999), pp. 199–235.
  • Sin, F., Bargteil, A.W., and Hodgins, J.K., 2009. A point-based method for animating incompressible flow. Presented at Proceedings of the 2009 ACM SIGGRAPH/Eurographics symposium on computer animation, SCA '09. 1–2, August.
  • Solenthaler, B., and Gross, M., 2011. Two-scale particle simulation, ACM Transactions on Graphics 30 (4) (2011), p. 81, 1–81:8.
  • Solenthaler, B., and Pajarola, R., 2008. Density contrast SPH interfaces. Presented at Proceedings of the 2008 ACM SIGGRAPH/Eurographics symposium on computer animation, SCA '08. 7–9, July.
  • Solenthaler, B., and Pajarola, R., 2009. Predictive-corrective incompressible SPH, ACM Transactions on Graphics 28 (3) (2009), p. 40, 1–40:6.
  • Solenthaler, B., Schläfli, J., and Pajarola, R., 2007. A unified particle model for fluid–solid interactions, Computer Animation & Virtual Worlds 18 (1) (2007), pp. 69–82.
  • Stam, J., 1999. Stable fluids. Presented at Proceedings of the 26th annual conference on computer graphics and interactive techniques, SIGGRAPH '99.
  • Stam, J., 2001. A simple fluid solver based on the FFT, Journal of Graphic Tools 6 (2) (2001), pp. 43–52.
  • Stam, J., 2003. Real-time fluid dynamics for games. Presented at Proceedings of the game developer conference, GDC 2003.
  • Terzopoulos, D., Platt, J., and Fleischer, K., 1989. Heating and melting deformable models (From goop to glop). Presented at Graphics interface 1989. 19–23, June.
  • Tessendorf, J., 2001. Simulating ocean water. Presented at SIGGRAPH 2001 course notes (Course 47), Simulating Nature: Realistic and Interactive Techniques.
  • Thürey, N., et al., 2006. Detail-preserving fluid control. Presented at Proceedings of the 2006 ACM SIGGRAPH/Eurographics symposium on computer animation, SCA '06. 2–4, September.
  • Thürey, N., and Rüde, U., 2004. Free surface Lattice-Boltzmann fluid simulations with and without level sets. Presented at Proceedings of VMV 2004. 16–18, November.
  • Treuille, A., Lewis, A., and Popović, Z., 2006. Model reduction for real-time fluids, ACM Transactions on Graphics 25 (3) (2006), pp. 826–834.
  • Treuille, A., et al., 2003. Keyframe control of smoke simulations, ACM Transactions on Graphics 22 (3) (2003), pp. 716–723.
  • Vanzine, Y., and Vrajitoru, D., 2008. Pseudorandom noise for real-time volumetric rendering of fire in a production system. Presented at IEEE/EG symposium on volume and point-based graphics.
  • Vines, M., Mora, J., and Lee, W.S., 2009. Haptic display of 3D liquids for interactive applications. Presented at Games innovations conference, ICE-GIC 2009.
  • Wang, C., et al., 2003. Real-time simulation of ocean wave based on cellular automata. Presented at Proceedings of CAD/Graphics'2003, Macao, China, 8th International Conference on CAD/Graphics, 2003.
  • Wei, X., Li, W., and Kaufman, A., 2003. Melting and flowing of viscous volumes. Presented at Proceedings of the 16th international conference on computer animation and social agents (CASA 2003), CASA '03.
  • Wei, X., et al., 2002. Simulating fire with texture splats. Presented at Proceedings of the conference on visualization '02, VIS '02. October 27–November 1.
  • Wei, X., et al., 2004a. The Lattice-Boltzmann method for simulating gaseous phenomena, IEEE Transactions on Visualization and Computer Graphics 10 (2) (2004a), pp. 164–176.
  • Wei, X., et al., 2004b. Lattice-based flow field modeling, IEEE Transactions on Visualization and Computer Graphics 10 (6) (2004b), pp. 719–729.
  • Weißmann, S., and Pinkall, U., 2010. Filament-based smoke with vortex shedding and variational reconnection, ACM Transactions on Graphics 29 (4) (2010), p. 115, 1–115:12.
  • Wendt, J.D., et al., 2007. Finite volume flow simulations on arbitrary domains, Graphical Models 69 (1) (2007), pp. 19–32.
  • Wicke, M., Stanton, M., and Treuille, A., 2009. Modular bases for fluid dynamics, ACM Transactions on Graphics 28 (3) (2009), p. 39, 1–39:8.
  • Wojtan, C., et al., 2009. Deforming meshes that split and merge, ACM Transactions on Graphics 28 (3) (2009), p. 76, 1–76:10.
  • Wojtan, C., et al., 2010. Physics-inspired topology changes for thin fluid features, ACM Transactions on Graphics 29 (4) (2010), p. 50, 1–50:8.
  • Wu, E., Liu, Y., and Liu, X., 2004. An improved study of real-time fluid simulation on GPU: Research articles, Computer Animation & Virtual Worlds 15 (3–4) (2004), pp. 139–146.
  • Yang, M., et al., 2009. GPU methods for real-time haptic interaction with 3D fluids. Presented at IEEE international workshop on haptic audio visual environments and games, 2009. HAVE 2009. 7–8, November.
  • Yngve, G.D., O'Brien, J.F., and Hodgins, J.K., 2000. Animating explosions. Presented at Proceedings of the 27th annual conference on computer graphics and interactive techniques, SIGGRAPH '00.
  • Yoon, J.C., et al., 2009. Procedural synthesis using vortex particle method for fluid simulation, Computer Graphics Forum 28 (7) (2009), pp. 1853–1859.
  • Yu, J., and Turk, G., 2010. Reconstructing surfaces of particle-based fluids using anisotropic kernels. Presented at Proceedings of the 2010 ACM SIGGRAPH/Eurographics symposium on computer animation, SCA '10. 2–4, July.
  • Yu, J., et al., 2012. Explicit mesh surfaces for particle based fluids. Presented at Proceedings of Eurographics 2012.
  • Yuksel, C., House, D.H., and Keyser, J., 2007. Wave particles, ACM Transactions on Graphics 26 (2007), pp. 99:1–99:8.
  • Zhang, F., et al., 2011. A SPH-based method for interactive fluids simulation on the multi-GPU. Presented at Proceedings of the 10th international conference on virtual reality continuum and its applications in industry, VRCAI '11. 11–12, December.
  • Zhao, Y., Yuan, Z., and Chen, F., 2010. Enhancing fluid animation with adaptive, controllable and intermittent turbulence. Presented at Proceedings of the 2010 ACM SIGGRAPH/Eurographics symposium on computer animation, SCA '10. 2–4, July.
  • Zhao, Y., et al., 2003. Voxels on fire. Presented at Proceedings of the 14th IEEE visualization 2003 (VIS'03), VIS '03.
  • Zhao, Y., et al., 2006. Melting and flowing in multiphase environment, Computers & Graphics 30 (4) (2006), pp. 519–528.
  • Zhu, H., et al., 2006. Simulation of miscible binary mixtures based on Lattice Boltzmann method: Research articles, Computer Animation & Virtual Worlds 17 (3–4) (2006), pp. 403–410.
  • Zhu, Y., and Bridson, R., 2005. Animating sand as a fluid, ACM Transactions on Graphics 24 (3) (2005), pp. 965–972.

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