High-order consistent SPH with the pressure projection method in 2-D and 3-D
DOI10.1016/j.jcp.2021.110563OpenAlexW3182624471MaRDI QIDQ2132649
Steven J. Lind, J. R. C. King, A. M. A. Nasar, Benedict D. Rogers, Peter K. Stansby, G. Fourtakas
Publication date: 28 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.2021.110563
smoothed particle hydrodynamicshigh-order accurate consistency correctionshigh-order SPH smoothing errorprojection methods for incompressible SPHstabilisation techniques for co-located projection methods
Basic methods in fluid mechanics (76Mxx) Numerical methods for partial differential equations, initial value and time-dependent initial-boundary value problems (65Mxx) Numerical methods for partial differential equations, boundary value problems (65Nxx)
Related Items
Uses Software
Cites Work
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unified semi-analytical wall boundary conditions applied to 2-D incompressible SPH
- Incompressible smoothed particle hydrodynamics for free-surface flows: A generalised diffusion-based algorithm for stability and validations for impulsive flows and propagating waves
- A stabilized incompressible SPH method by relaxing the density invariance condition
- Error estimation in smoothed particle hydrodynamics and a new scheme for second derivatives
- Radial basis functions: developments and applications to planetary scale flows
- \(\delta \)-SPH model for simulating violent impact flows
- Pressure boundary conditions for computing incompressible flows with SPH
- A very high-order finite volume method based on weighted least squares for elliptic operators on polyhedral unstructured grids
- On the effect of numerical errors in large eddy simulations of turbulent flows
- Analysis of adiabatic shear bands in elasto-thermo-viscoplastic materials by modified smoothed-particle hydrodynamics (MSPH) method
- 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
- Comparisons of weakly compressible and truly incompressible algorithms for the SPH mesh free particle method
- An SPH projection method
- An algorithm to improve consistency in smoothed particle hydrodynamics
- High-order Eulerian incompressible smoothed particle hydrodynamics with transition to Lagrangian free-surface motion
- Numerical wave basin using incompressible smoothed particle hydrodynamics (ISPH) on a single GPU with vertical cylinder test cases
- Flexible slender body fluid interaction: vector-based discrete element method with Eulerian smoothed particle hydrodynamics
- Hyperviscosity for shock-turbulence interactions
- Constructing smoothing functions in smoothed particle hydrodynamics with applications.
- Variational and momentum preservation aspects of smooth particle hydrodynamic formulations
- A consistent spatially adaptive smoothed particle hydrodynamics method for fluid-structure interactions
- Hyperviscosity-based stabilization for radial basis function-finite difference (RBF-FD) discretizations of advection-diffusion equations
- Simulating incompressible flow on moving meshfree grids
- A multiphase SPH model based on Roe's approximate Riemann solver for hydraulic flows with complex interface
- High order difference schemes using the local anisotropic basis function method
- A coupled incompressible SPH-Hamiltonian SPH solver for hydroelastic FSI corresponding to composite structures
- A meshless finite difference method based on polynomial interpolation
- High aspect ratio grid effects on the accuracy of Navier-Stokes solutions on unstructured meshes
- Enhancing finite differences with radial basis functions: experiments on the Navier-Stokes equations
- An overview of projection methods for incompressible flows
- Moving particle finite element method with superconvergence: nodal integration formulation and applications
- An incompressible multiphase SPH method
- The finite element method with Lagrangian multipliers
- Restoring particle consistency in smoothed particle hydrodynamics
- Efficient implementation of high‐order finite elements for Helmholtz problems
- Particle Methods for a 1D Elastic Model Problem: Error Analysis and Development of a Second-Order Accurate Formulation
- Novel finite particle formulations based on projection methodologies
- Truncation error in mesh-free particle methods
- Effects of grid staggering on numerical schemes
- On stability and convergence of projection methods based on pressure Poisson equation
- ON PARTICLE WEIGHTED METHODS AND SMOOTH PARTICLE HYDRODYNAMICS
- Landslides and tsunamis predicted by incompressible smoothed particle hydrodynamics (SPH) with application to the 1958 Lituya Bay event and idealized experiment
- On the error estimates for the rotational pressure-correction projection methods
- Reproducing kernel particle methods
- Review of smoothed particle hydrodynamics: towards converged Lagrangian flow modelling
- The numerical solution of the Navier-Stokes equations for an incompressible fluid
- AN APPROXIMATE PROJECTION SCHEME FOR INCOMPRESSIBLE FLOW USING SPECTRAL ELEMENTS
- A High-Order Staggered Meshless Method for Elliptic Problems