PARTICLE MESH HYDRODYNAMICS FOR ASTROPHYSICS SIMULATIONS
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Publication:3498349
DOI10.1142/S0129183107010851zbMath1255.85005OpenAlexW2006998849WikidataQ59938098 ScholiaQ59938098MaRDI QIDQ3498349
Philippe Chatelain, Petros Koumoutsakos, Georges-Henri Cottet
Publication date: 28 May 2008
Published in: International Journal of Modern Physics C (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1142/s0129183107010851
Particle methods and lattice-gas methods (76M28) Hydrodynamic and hydromagnetic problems in astronomy and astrophysics (85A30) Computational methods for problems pertaining to astronomy and astrophysics (85-08)
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Hybrid SPH-MD two-phase modelling of 3D free-surface flows introducing double K-H instability ⋮ A hybrid particle-mesh method for incompressible active polar viscous gels ⋮ Immersed interface interpolation schemes for particle-mesh methods ⋮ Large Scale, Multiresolution Flow Simulations Using Remeshed Particle Methods ⋮ Billion vortex particle direct numerical simulations of aircraft wakes
Uses Software
Cites Work
- Remeshed smoothed particle hydrodynamics for the simulation of viscous and heat conducting flows.
- SPH without a tensile stability
- PPM -- a highly efficient parallel particle-mesh library for the simulation of continuum systems
- Particle methods revisited: a class of high order finite-difference methods
- Convergence of a Variable Blob Vortex Method for the Euler and Navier–Stokes Equations
- MULTISCALE FLOW SIMULATIONS USING PARTICLES
- Smoothed particle hydrodynamics: theory and application to non-spherical stars
- Convergence of Vortex Methods for Euler’s Equations. II
- Convergence of the Grid-Free Point Vortex Method for the Three-Dimensional Euler Equations
- Multilevel Adaptive Particle Methods for Convection-Diffusion Equations
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