A Smoothed Particle Hydrodynamics Mini-App for Exascale

Author:

Cavelan Aurélien1,Cabezón Rubén M.1,Grabarczyk Michal1,Ciorba Florina M.1

Affiliation:

1. University of Basel

Publisher

ACM

Reference26 articles.

1. SPHYNX: an accurate density-based SPH method for astrophysical applications

2. The Romulus cosmological simulations: a physical approach to the formation, dynamics and accretion models of SMBHs

3. On distributed memory MPI-based parallelization of SPH codes in massive HPC context

4. Florina M. Ciorba Lucio Mayer Rubén M. Cabezón and David Imbert SPH-EXA: Optimizing Smoothed Particle Hydrodynamics for Exascale Computing www.pascch.org/projects/2017-2020/sph-exa/. Florina M. Ciorba Lucio Mayer Rubén M. Cabezón and David Imbert SPH-EXA: Optimizing Smoothed Particle Hydrodynamics for Exascale Computing www.pascch.org/projects/2017-2020/sph-exa/.

5. Supernova Simulations with Boltzmann Neutrino Transport: A Comparison of Methods

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