A least-squares particle model with other techniques for 2D viscoelastic fluid/free surface flow
From MaRDI portal
Publication:2122754
DOI10.1016/j.jcp.2020.109255OpenAlexW2999863681WikidataQ126359927 ScholiaQ126359927MaRDI QIDQ2122754
Jin-Lian Ren, Tao Jiang, Wen Zhou, Deng-Shan Wang, Jin Yun Yuan
Publication date: 7 April 2022
Published in: Journal of Computational Physics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.jcp.2020.109255
Related Items
A stable SPH model with large CFL numbers for multi-phase flows with large density ratios ⋮ Lagrangian differencing dynamics for incompressible flows ⋮ A high-efficient accurate coupled mesh-free scheme for 2D/3D space-fractional convection-diffusion/Burgers' problems ⋮ An accelerated novel meshless coupled Algorithm for non-local nonlinear behavior in 2D/3D space-fractional GPEs ⋮ A coupled particle model with particle shifting technology for simulating transient viscoelastic fluid flow with free surface ⋮ Modeling hydrate-bearing sediment with a mixed smoothed particle hydrodynamics ⋮ Simulating electrohydrodynamics with smoothed particle hydrodynamics based on a charge-conservative approach ⋮ Further enhancement of the particle shifting technique: towards better volume conservation and particle distribution in SPH simulations of violent free-surface flows ⋮ A high-efficient splitting step reduced-dimension pure meshless method for transient 2D/3D Maxwell's equations in complex irregular domain ⋮ A novel meshfree approach based on the finite pointset method for linear elasticity problems
Uses Software
Cites Work
- Unnamed Item
- An accurate SPH modeling of viscous flows around bodies at low and moderate Reynolds numbers
- Lattice Boltzmann method for the simulation of viscoelastic fluid flows
- Incompressible smoothed particle hydrodynamics for free-surface flows: A generalised diffusion-based algorithm for stability and validations for impulsive flows and propagating waves
- SPH modelling of fluid at the grain level in a porous medium
- An incompressible SPH method for simulation of unsteady viscoelastic free-surface flows
- A corrected smoothed particle hydrodynamics method for solving transient viscoelastic fluid flows
- Modified smoothed particle hydrodynamics method and its application to transient problems
- Accuracy and stability in incompressible SPH (ISPH) based on the projection method and a new approach
- Modeling of two-phase flows with surface tension by finite pointset method (FPM)
- An implicit technique for solving 3D low Reynolds number moving free surface flows
- Comparisons of weakly compressible and truly incompressible algorithms for the SPH mesh free particle method
- A regularized Lagrangian finite point method for the simulation of incompressible viscous flows
- SPH simulations of transient viscoelastic flows at low Reynolds number
- A numerical study of the SPH method for simulating transient viscoelastic free surface flows
- Creeping flow of dilute polymer solutions past cylinders and spheres
- A simple constitutive equation for polymer fluids based on the concept of deformation-dependent tensorial mobility
- An SPH projection method
- GENSMAC: a computational marker and cell method for free surface flows in general domains
- Simulating free surface flows with SPH
- Meshless methods: An overview and recent developments
- A stabilized finite point method for analysis of fluid mechanics problems
- A new kernel function for SPH with applications to free surface flows
- An improved parallel SPH approach to solve 3D transient generalized Newtonian free surface flows
- Viscoelastic flows studied by smoothed particle dynamics
- A finite difference technique for simulating unsteady viscoelastic free surface flows
- Remeshed smoothed particle hydrodynamics for the simulation of viscous and heat conducting flows.
- Numerical simulation of axisymmetric free surface flows
- The \(\delta p l u s\)-SPH model: simple procedures for a further improvement of the SPH scheme
- A numerical study of the \textit{kernel-conformation} transformation for transient viscoelastic fluid flows
- Incompressible smoothed particle hydrodynamics (SPH) with reduced temporal noise and generalised Fickian smoothing applied to body-water slam and efficient wave-body interaction
- An incompressible multiphase SPH method
- A multi-phase SPH method for macroscopic and mesoscopic flows
- Modeling incompressible flows using a finite particle method
- Time-dependent simulation of viscoelastic flows at high Weissenberg number using the log-conformation representation
- An SPH modeling of bubble rising and coalescing in three dimensions
- Incompressible SPH simulation of water entry of a free-falling object
- A FINITE POINT METHOD IN COMPUTATIONAL MECHANICS. APPLICATIONS TO CONVECTIVE TRANSPORT AND FLUID FLOW
- Smoothed Particle Hydrodynamics
- A Numerical Scheme for Solving Incompressible and Low Mach Number Flows by the Finite Pointset Method
- Reproducing kernel particle methods
- A simple SPH algorithm for multi‐fluid flow with high density ratios
- A finite point method for incompressible flow problems