The Hamiltonian Particle-Mesh (HPM) method is a particle-in-cell method for compressible fluid flow with Hamiltonian structure. We present a numer- ical short-time study of the rate of convergence of HPM in terms of its three main governing parameters. We find that the rate of convergence is much better than the best available theoretical estimates. Our results indicate that HPM performs best when the number of particles is on the order of the number of grid cells, the HPM global smoothing kernel has fast decay in Fourier space, and the HPM local interpolation kernel is a cubic spline
International audienceParticle methods are often associated with frequent remeshing to maintain the ...
The Hamiltonian particle-mesh (HPM) method is generalized to the spherical shallow water equations, ...
We propose the use of high-order accurate interpolation and approximation schemes alongside high-ord...
textabstractThe Hamiltonian particle-mesh (HPM) method is generalized to the spherical shallow water...
The paper deals with the convergence problem of the SPH (Smoothed Particle Hydrodynamics) meshfree m...
Despite the many advances in the use of weakly-compressible smoothed particle hydrodynamics (SPH) fo...
We conduct long-time simulations with a Hamiltonian particle-mesh method for ideal fluid flow, to de...
The Hamiltonian particle-mesh (HPM) method is generalized to the spherical shallow-water equations, ...
We conduct long-time simulations with a Hamiltonian particle-mesh method for ideal fluid flow, to de...
The Hamiltonian particle-mesh (HPM) method is used to solve the Quasi-Geostrophic model generalized ...
AbstractIn this paper, we prove the convergence of a smooth particle flow to the solution of a regul...
htmlabstractWe conduct long-time simulations with a Hamiltonian particle-mesh method for ideal fluid...
The Hamiltonian particle-mesh (HPM) method is used to \nsolve the Quasi-Geostrophic model generalize...
We conduct long simulations with a Hamiltonian particle-mesh method for ideal fluid flow, to determi...
The Hamiltonian particle-mesh (HPM) method is generalized to the spherical shallow water equations, ...
International audienceParticle methods are often associated with frequent remeshing to maintain the ...
The Hamiltonian particle-mesh (HPM) method is generalized to the spherical shallow water equations, ...
We propose the use of high-order accurate interpolation and approximation schemes alongside high-ord...
textabstractThe Hamiltonian particle-mesh (HPM) method is generalized to the spherical shallow water...
The paper deals with the convergence problem of the SPH (Smoothed Particle Hydrodynamics) meshfree m...
Despite the many advances in the use of weakly-compressible smoothed particle hydrodynamics (SPH) fo...
We conduct long-time simulations with a Hamiltonian particle-mesh method for ideal fluid flow, to de...
The Hamiltonian particle-mesh (HPM) method is generalized to the spherical shallow-water equations, ...
We conduct long-time simulations with a Hamiltonian particle-mesh method for ideal fluid flow, to de...
The Hamiltonian particle-mesh (HPM) method is used to solve the Quasi-Geostrophic model generalized ...
AbstractIn this paper, we prove the convergence of a smooth particle flow to the solution of a regul...
htmlabstractWe conduct long-time simulations with a Hamiltonian particle-mesh method for ideal fluid...
The Hamiltonian particle-mesh (HPM) method is used to \nsolve the Quasi-Geostrophic model generalize...
We conduct long simulations with a Hamiltonian particle-mesh method for ideal fluid flow, to determi...
The Hamiltonian particle-mesh (HPM) method is generalized to the spherical shallow water equations, ...
International audienceParticle methods are often associated with frequent remeshing to maintain the ...
The Hamiltonian particle-mesh (HPM) method is generalized to the spherical shallow water equations, ...
We propose the use of high-order accurate interpolation and approximation schemes alongside high-ord...