Shock simulation by the particle method SPH
From MaRDI portal
Publication:1062556
DOI10.1016/0021-9991(83)90036-0zbMath0572.76059OpenAlexW2076730205WikidataQ63866194 ScholiaQ63866194MaRDI QIDQ1062556
R. A. Gingold, Joseph J. Monaghan
Publication date: 1983
Published in: Journal of Computational Physics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/0021-9991(83)90036-0
smoothed particle hydrodynamicsone-dimensional shock tube problemsnew kind of artificial viscositysuper Gaussian interpolating kernel with fourth-order errors
Related Items
Efficient smoothed particle radiation hydrodynamics. II: Radiation hydrodynamics, Multiresolution reproducing kernel particle method for computational fluid dynamics, Enhanced weakly-compressible MPS method for violent free-surface flows: role of particle regularization techniques, Computational geomechanics: The heritage of Olek Zienkiewicz, Stability and accuracy of the weakly compressible SPH with particle regularization techniques, On particle shifting techniques (PSTs): analysis of existing laws and proposition of a convergent and multi-invariant law, Coupling of smoothed particle hydrodynamics with finite volume method for free-surface flows, STRESS POINTS FOR TENSION INSTABILITY IN SPH, ON PARTICLE WEIGHTED METHODS AND SMOOTH PARTICLE HYDRODYNAMICS, An SPH modeling of bubble rising and coalescing in three dimensions, Smoothed Particle Hydrodynamics-Based Viscous Deformable Object Modelling, On the convergence of the solutions to the integral SPH heat and advection-diffusion equations: theoretical analysis and numerical verification, SBFE Virtual Particle Boundary: A New Non-Reflecting Boundary in SPH, Physics Evoked Cloud Method, Viscous Flow Past a NACA0012 Foil Below a Free Surface Through the Delta-Plus-SPH Method, A coupled WC-TL SPH method for simulation of hydroelastic problems, A smoothed particle hydrodynamics approach for phase field modeling of brittle fracture, Wall-layer boundary condition method for laminar and turbulent flows in weakly-compressible SPH, An Improved Specified Finite Particle Method and Its Application to Transient Heat Conduction, Robustness and accuracy of SPH formulations for viscous flow, An enhanced weakly-compressible MPS method for free-surface flows, Improved particle shifting technology and optimized free-surface detection method for free-surface flows in smoothed particle hydrodynamics, 3D smooth particle hydrodynamics modeling for high velocity penetrating impact using GPU: application to a blunt projectile penetrating thin steel plates, Multiscale modeling of impact through molecular dynamics and smooth particle hydrodynamics, Regularization of singularities in the weighted summation of Dirac-delta functions for the spectral solution of hyperbolic conservation laws, On the equivalence of Eulerian smoothed particle hydrodynamics, total Lagrangian smoothed particle hydrodynamics and molecular dynamics simulations for solids, Lagrangian differencing dynamics for incompressible flows, An algorithm for implementing a boundary viscous force with single-layer wall particles based on WCSPH, A multiphase SPH model based on Roe's approximate Riemann solver for hydraulic flows with complex interface, A shift model based on particle collisions -- preserving kinetic energy and potential energy in a constant force field -- to avoid particle clustering in SPH, FSISPH: an SPH formulation for impacts between dissimilar materials, Fast and accurate SPH modelling of 3D complex wall boundaries in viscous and non viscous flows, Coupling an SPH-based solver with an FEA structural solver to simulate free surface flows interacting with flexible structures, NUMERICAL SIMULATIONS FOR LARGELY DEFORMED BEAMS AND RINGS ADOPTING A NONTENSILE SMOOTHED PARTICLE HYDRODYNAMICS ALGORITHM, Impact on alumina. II. Linking the mesoscale to the continuum, Enhanced resolution of the continuity equation in explicit weakly compressible SPH simulations of incompressible free-surface fluid flows, Clone particles: a simplified technique to enforce solid boundary conditions in SPH, Artificial viscosity in simulation of shock waves by smoothed particle hydrodynamics, Incompressible \(\delta\)-SPH via artificial compressibility, A hybrid finite volume-smoothed particle hydrodynamics approach for shock capturing applications, A two-way coupling method for simulating wave-induced breakup of ice floes based on SPH, Multi-resolution delta-plus-SPH with tensile instability control: towards high Reynolds number flows, Unnamed Item, Numerical diffusive terms in weakly-compressible SPH schemes., Parameter optimization for the smoothed-particle hydrodynamics method by means of evolutionary metaheuristics, Inclusion of an acoustic damper term in weakly-compressible SPH models, New adaptive artificial viscosity method for hyperbolic systems of conservation laws, An ALE pairwise-relaxing meshless method for compressible flows, An accurate multi-regime SPH scheme for barotropic flows, A weakly compressible SPH method with WENO reconstruction, A weakly compressible SPH method for violent multi-phase flows with high density ratio, Free surface tracking with polynomial reconstruction and error correction, Accurate particle splitting for smoothed particle hydrodynamics in shallow water with shock capturing, SPH-based numerical investigation of mudflow and other complex fluid flow interactions with structures, A novel smoothed particle hydrodynamics formulation for thermo-capillary phase change problems with focus on metal additive manufacturing melt pool modeling, An improved thermal model for SPH metal cutting simulations on GPU, Further enhancement of the particle shifting technique: towards better volume conservation and particle distribution in SPH simulations of violent free-surface flows, THREE-DIMENSIONAL PENETRATION SIMULATION USING SMOOTHED PARTICLE HYDRODYNAMICS, A novel non-reflecting boundary condition for fluid dynamics solved by smoothed particle hydrodynamics, A consistency-driven particle-advection formulation for weakly-compressible smoothed particle hydrodynamics, The nonlocal, local and mixed forms of the SPH method, Comparative study on the accuracy and stability of SPH schemes in simulating energetic free-surface flows, Smoothed particle hydrodynamics and finite volume modelling of incompressible fluid flow, Meshless method for conservation laws, Two-dimensional SPH simulations of wedge water entries, SPH in spherical and cylindrical coordinates, Gridless simulations of splashing processes and near-shore bore propagation, SPH method applied to compression of solid materials for a variety of loading conditions, Assessment of smoothed particle hydrodynamics (SPH) models for predicting wall heat transfer rate at complex boundary, An advanced study on discretization-error-based adaptivity in smoothed particle hydrodynamics, Moving-least-squares-particle hydrodynamics?I. Consistency and stability, Permeable and non-reflecting boundary conditions in SPH, The Application of Godunov SPH in the Simulation of Energetic Materials, Solving time-dependent PDEs using the material point method, a case study from gas dynamics, Improvement of the tensile instability in SPH scheme for the FEI (fluid-elastomer interaction) problem, A fully explicit three‐step SPH algorithm for simulation of non‐Newtonian fluid flow, A depth-integrated, coupled SPH model for flow-like landslides and related phenomena, Unnamed Item, Calculating the smoothing error in SPH, A strongly coupled Eulerian Lagrangian method verified in 2D external compressible flows, A wave-breaking model for the depth-semi-averaged equations, Large deformation analysis of geomaterials using stabilized total Lagrangian smoothed particle hydrodynamics, Artificial viscosity for particle methods, Construction of higher order accurate vortex and particle methods, An adaptive SPH method for strong shocks, A new kernel function for SPH with applications to free surface flows, A SPH model for the simulation of free surface granular flows in a dense regime, Neumann and Robin boundary conditions for heat conduction modeling using smoothed particle hydrodynamics, A robust shell element in meshfree SPH method, Proposal for fast calculation of particle interactions in SPH simulations, Smoothed particle hydrodynamics method for fluid flows, towards industrial applications: motivations, current state, and challenges, On the consistency and convergence of particle-based meshfree discretization schemes for the Laplace operator, A well-balanced path conservative SPH scheme for nonconservative hyperbolic systems with applications to shallow water and multi-phase flows, A numerical method for the computation of the dispersion of a cloud of particles by a turbulent gas flow field, von Neumann stability analysis of smoothed particle hydrodynamics -- suggestions for optimal algorithms, Depth averaged models for fast landslide propagation: mathematical, rheological and numerical aspects, Surface tension and wetting effects with smoothed particle hydrodynamics, A relativistic smoothed particle hydrodynamics method tested with the shock tube, Coupled SPH-FV method with net vorticity and mass transfer, An accurate SPH modeling of viscous flows around bodies at low and moderate Reynolds numbers, Conservative smoothing stabilizes discrete-numerical instabilities in SPH material dynamics computations, A comparison of SPH schemes for the compressible Euler equations, On the maximum time step in weakly compressible SPH, Approximate Riemann solvers for the Godunov SPH (GSPH), Modeling unsteady flow characteristics using smoothed particle hydrodynamics, A switch to reduce SPH viscosity, On the feasibility of using smoothed particle hydrodynamics for underwater explosion calculations, Ring galaxies: The dynamical effect of the halo and the role of shear viscosity and pressure gradient forces, SPH for high velocity impact computations, Smoothed particle hydrodynamics: Some recent improvements and applications, SPH and Riemann solvers, On the problem of penetration in particle methods, Fluid-structure interaction analysis by coupled FE-SPH model based on a novel searching algorithm, Hamiltonian particle hydrodynamics, Numerical aspects of the smoothed particle hydrodynamics method for simulating accretion disks, GRADSPH: A parallel smoothed particle hydrodynamics code for self-gravitating astrophysical fluid dynamics, A simple procedure to improve the pressure evaluation in hydrodynamic context using the SPH, Axis-symmetrical Riemann problem solved with standard SPH method. Development of a polar formulation with artificial viscosity, SPH faces Emery's jump, Shape design optimization of {SPH} fluid-structure interactions considering geometrically exact interfaces, Evaluation of accuracy and stability of the classical SPH method under uniaxial compression, AQUAgpusph, a new free 3D SPH solver accelerated with OpenCL, A weakly compressible SPH method based on a low-dissipation Riemann solver, A new model to solve fluid-hypo-elastic solid interaction using the smoothed particle hydrodynamics (SPH) method, An arbitrary boundary with ghost particles incorporated in coupled FEM-SPH model for FSI problems, Smoothed particle hydrodynamics: a consistent model for interfacial multiphase fluid flow simulations, A class of renormalised meshless Laplacians for boundary value problems, A compatible high-order meshless method for the Stokes equations with applications to suspension flows, Numerical simulation of interfacial flows by smoothed particle hydrodynamics, Smooth particle hydrodynamics: importance of correction terms in adaptive resolution algorithms., Study of dynamic behavior of ceramic-metal FGM under high velocity impact conditions using CSPM method, Numerical simulations of shock wave reflection phenomena in non-stationary flows using regularized smoothed particle hydrodynamics (RSPH), Unidimensional SPH simulations of reactive shock tubes in an astrophysical perspective, SPH hydrocodes can be stabilized with shape-shifting, An SPH projection method for simulating fluid-hypoelastic structure interaction, A two-steps time discretization scheme using the SPH method for shock wave propagation, Heuristic acceleration correction algorithm for use in SPH computations in impact mechanics, Pseudo-spring smoothed particle hydrodynamics (SPH) based computational model for slope failure, Viscous flow past a cylinder close to a free surface: benchmarks with steady, periodic and metastable responses, solved by meshfree and mesh-based schemes, Time domain simulation of sound waves using smoothed particle hydrodynamics algorithm with artificial viscosity, A scalable consistent second-order SPH solver for unsteady low Reynolds number flows, Energy balance in the \(\delta\)-SPH scheme, Flexible slender body fluid interaction: vector-based discrete element method with Eulerian smoothed particle hydrodynamics, Droplet collision and coalescence model, A general deterministic treatment of derivatives in particle methods, Thermal simulation in multiphase incompressible flows using coupled meshfree and particle level set methods, Novel particle distributions for SPH bird-strike simulations, Numerical simulation of laser fusion additive manufacturing processes using the SPH method, A 3D SPH-FE coupling for FSI problems and its application to tire hydroplaning simulations on rough ground, CRKSPH - A conservative reproducing kernel smoothed particle hydrodynamics scheme, Development of the multi-scale analysis model to simulate strain localization occurring during material processing, Meshless study of dynamic failure in shells, A vortex particle method for two-dimensional compressible flow, Numerical simulation of 2D-vorticity dynamics using particle methods, A tensor artificial viscosity for SPH, On criteria for smoothed particle hydrodynamics kernels in stable field, Higher-order nonlocal theory of updated Lagrangian particle hydrodynamics (ULPH) and simulations of multiphase flows, A particle method for first-order symmetric systems, Application of particle splitting method for both hydrostatic and hydrodynamic cases in SPH, Adaptive particle refinement and derefinement applied to the smoothed particle hydrodynamics method, Numerical study of nonlinear heat transfer from a wavy surface to a high permeability medium with pseudo-spectral and smoothed particle methods, Numerical simulation of submarine non-rigid landslide by an explicit three-step incompressible smoothed particle hydrodynamics, Simulation of solid-fluid mixture flow using moving particle methods, The viscous gas ring as an astrophysical test problem for a viscous SPH-code, Constructing smoothing functions in smoothed particle hydrodynamics with applications., An improved total Lagrangian SPH method for modeling solid deformation and damage, C-CSF: accurate, robust and efficient surface tension and contact angle models for single-phase flows using SPH, A continuum consistent discrete particle method for continuum-discontinuum transitions and complex fracture problems, A finite particle method based on a Riemann solver for modeling incompressible flows, SPH simulation of structures impacted by tailing debris flow and its application to the buffering effect analysis of debris checking dams, Numerical simulation of metal machining process with eulerian and total Lagrangian SPH, SPH numerical modelling of landslide movements as coupled two-phase flows with a new solution for the interaction term, An improved recoil pressure boundary condition for the simulation of deep penetration laser beam welding using the SPH method, An artificial damping method for total Lagrangian SPH method with application in biomechanics, Fracture in concrete gravity dams under dynamic loading conditions, Tests of spurious transport in smoothed particle hydrodynamics, A multi-resolution SPH-FEM method for fluid-structure interactions, Particles and grid, Numerical simulations of complex water spray flows around aircraft landing tire, The role of time integration in energy conservation in smoothed particle hydrodynamics fluid dynamics simulations, Remeshed smoothed particle hydrodynamics for the simulation of viscous and heat conducting flows., Extrapolating B splines for interpolation
Cites Work
- Unnamed Item
- Unnamed Item
- Kernel estimates as a basis for general particle methods in hydrodynamics
- A survey of several finite difference methods for systems of nonlinear hyperbolic conservation laws
- Towards the ultimate conservative difference scheme. V. A second-order sequel to Godunov's method
- Smoothed particle hydrodynamics: theory and application to non-spherical stars
- Why Particle Methods Work
- GAP--A PIC-Type Fluid Code