Publication | Closed Access
Position based fluids
390
Citations
26
References
2013
Year
Numerical AnalysisEngineeringFluid MechanicsMechanical EngineeringParticle MethodComputational MechanicsNumerical SimulationModeling And SimulationIncompressible FlowSemi-implicit MethodFlow PhysicComputer EngineeringComputational Fluid DynamicsFluid SimulationMultiphase FlowConstant DensityFluid-structure InteractionFluid-solid InteractionVorticity Confinement
In fluid simulation, enforcing incompressibility is crucial for realism; it is also computationally expensive. Recent work has improved efficiency, but still requires time-steps that are impractical for real-time applications. In this work we present an iterative density solver integrated into the Position Based Dynamics framework (PBD). By formulating and solving a set of positional constraints that enforce constant density, our method allows similar incompressibility and convergence to modern smoothed particle hydro-dynamic (SPH) solvers, but inherits the stability of the geometric, position based dynamics method, allowing large time steps suitable for real-time applications. We incorporate an artificial pressure term that improves particle distribution, creates surface tension, and lowers the neighborhood requirements of traditional SPH. Finally, we address the issue of energy loss by applying vorticity confinement as a velocity post process.
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