An incompressible-compressible Lagrangian particle method for bubble flows with a sharp density jump and boiling phase change
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Publication:2021048
DOI10.1016/j.cma.2020.113425zbMath1506.76181OpenAlexW3090823085MaRDI QIDQ2021048
Akifumi Yamaji, Mikio Sakai, Guangtao Duan
Publication date: 26 April 2021
Published in: Computer Methods in Applied Mechanics and Engineering (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.cma.2020.113425
Particle methods and lattice-gas methods (76M28) Liquid-gas two-phase flows, bubbly flows (76T10) Probabilistic methods, particle methods, etc. for initial value and initial-boundary value problems involving PDEs (65M75)
Related Items (6)
An improved MPS method for simulating multiphase flows characterized by high-density ratios and violent deformation of interface ⋮ MPS-based axisymmetric particle method for bubble rising with density and pressure discontinuity ⋮ Development of adaptive multi-resolution MPS method for multiphase flow simulation ⋮ New insights into error accumulation due to biased particle distribution in semi-implicit particle methods ⋮ An enhanced semi-implicit particle method for simulating the flow of droplets with free surfaces ⋮ On the free surface boundary of moving particle semi-implicit method for thermocapillary flow
Cites Work
- A transport-velocity formulation for smoothed particle hydrodynamics
- Three-dimensional simulation of a solid-liquid flow by the DEM-SPH method
- A comparison of SPH schemes for the compressible Euler equations
- An incompressible smoothed particle hydrodynamics method for the motion of rigid bodies in fluids
- Enhancement of performance and stability of MPS mesh-free particle method for multiphase flows characterized by high density ratios
- Incompressible smoothed particle hydrodynamics for free-surface flows: A generalised diffusion-based algorithm for stability and validations for impulsive flows and propagating waves
- Numerical investigation of Newtonian and non-Newtonian multiphase flows using ISPH method
- On the consistency of MPS
- Numerical simulation of single droplet dynamics in three-phase flows using ISPH
- Enhancement of stability and accuracy of the moving particle semi-implicit method
- Solidification using smoothed particle hydrodynamics
- A simple procedure to improve the pressure evaluation in hydrodynamic context using the SPH
- Step-by-step improvement of MPS method in simulating violent free-surface motions and impact-loads
- Comparative study on accuracy and conservation properties of two particle regularization schemes and proposal of an optimized particle shifting scheme in ISPH context
- An SPH model for multiphase flows with complex interfaces and large density differences
- Incompressible-compressible flows with a transient discontinuous interface using smoothed particle hydrodynamics (SPH)
- Moving surface mesh-incorporated particle method for numerical simulation of a liquid droplet
- A novel ghost cell boundary model for the explicit moving particle simulation method in two dimensions
- Accuracy and stability in incompressible SPH (ISPH) based on the projection method and a new approach
- A constant-density approach for incompressible multi-phase SPH
- Modeling low Reynolds number incompressible flows using SPH
- Numerical simulation of interfacial flows by smoothed particle hydrodynamics
- A volume of fluid based method for fluid flows with phase change
- Simulations of gas-liquid compressible-incompressible systems using SPH
- A projection-based particle method with optimized particle shifting for multiphase flows with large density ratios and discontinuous density fields
- Numerical analysis of boiling on high heat-flux and high subcooling condition using MPS-MAFL
- An advanced moving particle semi-implicit method for accurate and stable simulation of incompressible flows
- A 3D SPH-FE coupling for FSI problems and its application to tire hydroplaning simulations on rough ground
- Improved treatment of wall boundary conditions for a particle method with consistent spatial discretization
- A review on MPS method developments and applications in nuclear engineering
- Stable multiphase moving particle semi-implicit method for incompressible interfacial flow
- A multiphase MPS solver for modeling multi-fluid interaction with free surface and its application in oil spill
- The truncation and stabilization error in multiphase moving particle semi-implicit method based on corrective matrix: which is dominant?
- On the treatment of solid boundary in smoothed particle hydrodynamics
- An MPS-based particle method for simulation of multiphase flows characterized by high density ratios by incorporation of space potential particle concept
- A contoured continuum surface force model for particle methods
- Modeling of liquid-vapor phase change using smoothed particle hydrodynamics
- SPH accuracy improvement through the combination of a quasi-Lagrangian shifting transport velocity and consistent ALE formalisms
- A multi-phase SPH method for macroscopic and mesoscopic flows
- An SPH modeling of bubble rising and coalescing in three dimensions
- Direct Numerical Simulations of Gas–Liquid Multiphase Flows
- Quantitative benchmark computations of two-dimensional bubble dynamics
- A weakly compressible MPS method for modeling of open-boundary free-surface flow
- Computations of boiling flows
- Smoothed particle hydrodynamics: theory and application to non-spherical stars
- Direct calculation of bubble growth, departure, and rise in nucleate pool boiling
- An enhanced ISPH-SPH coupled method for simulation of incompressible fluid-elastic structure interactions
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