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Moving-Particle Semi-Implicit Method for Fragmentation of Incompressible Fluid
2K
Citations
19
References
1996
Year
Moving-particle Semi-implicitEngineeringIncompressible FlowFluid MechanicsCivil EngineeringNumerical SimulationMechanical EngineeringFluid DensityParticle MethodRheologyFluid-solid InteractionMoving-particle Semi-implicit MethodDisperse FlowKernel FunctionMultiphase FlowComputational MechanicsParticle-laden FlowMultiscale Modeling
A moving-particle semi-implicit (MPS) method for simulating fragmentation of incompressible fluids is presented. The motion of each particle is calculated through interactions with neighboring particles covered with the kernel function. Deterministic particle interaction models representing gradient, Laplacian, and free surfaces are proposed. Fluid density is implicitly required to be constant as the incompressibility condition, while the other terms are explicitly calculated. The Poisson equation of pressure is solved by the incomplete Cholesky conjugate gradient method. Collapse of a water column is calculated using MPS. The effect of parameters in the models is investigated in test calculations. Good agreement with an experiment is obtained even if fragmentation and coalescence of the fluid take place.
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