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Wen Zheng, Jun-Hai Yong, Jean-Claude Paul. Visual Simulation of Multiple Unmixable Fluids[J]. Journal of Computer Science and Technology, 2007, 22(1): 156-160.
Citation: Wen Zheng, Jun-Hai Yong, Jean-Claude Paul. Visual Simulation of Multiple Unmixable Fluids[J]. Journal of Computer Science and Technology, 2007, 22(1): 156-160.

Visual Simulation of Multiple Unmixable Fluids

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  • Received Date: June 04, 2005
  • Revised Date: June 12, 2006
  • Published Date: January 14, 2007
  • We present a novel grid-based method for simulating multiple unmixablefluids moving and interacting. Unlike previous methods that can onlyrepresent the interface between two fluids (usually between liquid andgas), this method can handle an arbitrary number of fluids throughmultiple independent level sets coupled with a constrain condition. Tocapture the fluid surface more accurately, we extend the particle levelset method to a multi-fluid version. It shares the advantages of theparticle level set method, and has the ability to track the interfacesof multiple fluids. To handle the dynamic behavior of different fluidsexisting together, we use a multiphase fluid formulation based on asmooth weight function.
  • [1]
    Foster N, Fedkiw R. Practical animation of liquids. In -\it Proc. ACM SIGGRAPH 2001, Computer Graphics}, Fiume E (ed.), ACM Press/ACM SIGGRAPH, Los Angeles, California, USA, 2001, pp.23--30.
    [2]
    Enright D, Marschner S, Fedkiw R. Animation and rendering of complex water surfaces. -\it ACM Transactions on Graphics} -\it (Proc. of ACM SIGGRAPH 2002)}, San Antonio, Texas, USA, 2002, 21(3): 736--744.
    [3]
    Merriman B, Bence J K, Osher S J. Motion of multiple junctions: A level set approach. -\it Journal of Computational Physics}, 1994, 112(2): 334--363.
    [4]
    Sussman M, Smereka P, Osher S. A level set approach for computing solutions to incompressible two-phase flow. -\it Journal of Computational Physics}, 1994, 114(1): 146--159.
    [5]
    Foster N, Metaxas R. Realistic animation of liquids. In -\it Graphics Interface'96}, Toronto, Ontario, Canada, 1996, pp. 204--212.
    [6]
    Harlow F H, Welch J E. Numerical calculation of time-dependent viscous incompressible flow of fluid with free surfaces. -\it Phys. Fluids}, 1965, 8(12): 2182--2189.
    [7]
    Stam J. Stable fluids. In -\it Proc. SIGGRAPH 99}, Los Angeles, California, USA, pp.121--128.
    [8]
    Fedkiw R, Stam J, Jensen H. Visual simulation of smoke. In -\it Proc. ACM SIGGRAPH 2001}, Los Angeles, California, USA, pp.15--22.
    [9]
    Losasso F, Gibou F, Fedkiw R. Simulating water and smoke with an octree data structure. -\it ACM Transactions on Graphics} (-\it Proc. ACM SIGGRAPH 2004)}, Los Angeles, California, USA, 2004, 23(3): 457--462.
    [10]
    Song O, Shin H, Ko H. Stable but Non-Dissipative Water. -\it ACM Transactions on Graphics}, 2005, 11(2): 1--16.
    [11]
    Carlson M, Mucha P, Van Horn III R, Turk G. Melting and flowing. In -\it ACM SIGGRAPH Symposium on Computer Animation}, San Antonio, USA, 2002, pp.167--174.
    [12]
    Hong J M, Kim C H. Animation of bubbles in liquid. -\it Computer Graphics Forum} -\it (Proc. Eurographics 2003)}, Granada, Spain, 2003, 22(3): 253--262.
    [13]
    Takahashi T, Fujii H, Kunimatsu A -\it et al}. Realistic animation of fluid with splash and foam. In -\it Computer Graphics Forum (Proc. Eurographics 2003)}, Granada, Spain, 2003, 22(3): 391--400.
    [14]
    Stam J. Flows on surfaces of arbitrary topology. -\it ACM Transactions Graphics} -\it (Proc. ACM SIGGRAPH 2003)}, San Diego, California, USA, 2003, 22(3): 724--731.
    [15]
    Goktekin T G, Bargteil A W, O'Brien J. A method for animating viscoelastic fluids. -\it ACM Transactions on Graphics} -\it (Proc. ACM SIGGRAPH 2004)}, Los Angeles, California, USA, 2004, 23(3): 463--467.
    [16]
    Mihalef V, Metaxas D, Sussman M. Animation and control of breaking waves. In -\it ACM SIGGRAPH/Eurographics Symposium on Computer Animation 2004}, Grenoble, France, pp.315--324.
    [17]
    Greenwood S T, House D H. Better with Bubbles: Enhancing the visual realism of simulated fluid. In -\it Proc. ACM SIGGRAPH/Eurographics Symposium on Computer Animation 2004}, Grenoble, France, pp.287--296.
    [18]
    Carlson M, Mucha P J, Turk G. Rigid fluid: Animating the interplay between rigid bodies and fluid. -\it ACM Transactions on Graphics} -\it (Proc. ACM SIGGRAPH 2004)}, Los Angeles, California, USA, 2004, 23(3): 377--384.
    [19]
    Smith K, Solisy F, Chopp D. A projection method for motion of triple junctions by level sets. -\it Interfaces and Free Boundaries}, 2002, 4(3): 263--276.
    [20]
    Lorensen W E, Cline H E. Marching Cubes: A high resolution 3D surface construction algorithm. In -\it Proc. Int. Conference on Computer Graphics and Interactive Techniques}, Anaheim, California, USA, 1987, pp.163--169.
    [21]
    PIXIE. http://sourceforge.net/projects/pixie.
    [22]
    Jensen H W, Christensen P H, Kato T \it et al. \rm A practical guide to global illumination using ray tracing and photon mapping. In -\it Proc. SIGGRAPH 2002}, Course 43, San Antonio, Texas, USA, 2002.
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