Now showing items 1-4 of 4

    • Accurate viscous free surfaces for buckling, coiling, and rotating liquids 

      Batty, Christopher; Bridson, Robert (Association for Computing Machinery, 2008-07)
      We present a fully implicit Eulerian technique for simulating free surface viscous liquids which eliminates artifacts in previous approaches, efficiently supports variable viscosity, and allows the simulation of more ...
    • A fast variational framework for accurate solid-fluid coupling 

      Batty, Christopher; Bertails, Florence; Bridson, Robert (Association for Computing Machinery, 2007-07)
      Physical simulation has emerged as a compelling animation technique, yet current approaches to coupling simulations of fluids and solids with irregular boundary geometry are inefficient or cannot handle some relevant ...
    • Matching fluid simulation elements to surface geometry and topology 

      Brochu, Tyson; Batty, Christopher; Bridson, Robert (Association for Computing Machinery, 2010-07)
      We introduce an Eulerian liquid simulation framework based on the Voronoi diagram of a potentially unorganized collection of pressure samples. Constructing the simulation mesh in this way allows us to place samples anywhere ...
    • Variational Stokes: A Unified Pressure-viscosity Solver for Accurate Viscous Liquids 

      Larionov, Egor; Batty, Christopher; Bridson, Robert (Association for Computing Machinery, 2017-07-20)
      We propose a novel unsteady Stokes solver for coupled viscous and pressure forces in grid-based liquid animation which yields greater accuracy and visual realism than previously achieved. Modern fluid simulators treat ...

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