Showing 13 open source projects for "particle simulation"

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  • 1
    Smilei

    Smilei

    Particle-in-cell code for plasma simulation

    Smilei is an open-source electromagnetic Particle-In-Cell code for kinetic plasma simulation. It is designed for high-performance computing and can run on modern supercomputing architectures. The software is co-developed by physicists and computer scientists, which gives it both strong numerical physics capabilities and serious parallel-performance engineering. Smilei supports a wide range of plasma studies, including laser-plasma interaction, accelerator physics, space physics, and astrophysical plasmas. ...
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  • 2
    OpenFOAM

    OpenFOAM

    The Open Source CFD Toolbox

    OpenFOAM - The Open Source CFD Toolbox. OpenFOAM is a generic, programmable software tool for Computational Fluid Dynamics (CFD). For more information, see: - Main Website: https://openfoam.org - C++ Source Documentation: https://cpp.openfoam.org - Issue (Bug) Tracking: https://bugs.openfoam.org - User Guide: https://cfd.direct/openfoam/user-guide
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    Downloads: 2,383 This Week
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  • 3
    As of August 2018 Spheral++ has moved to Github -- please see the current repository at https://github.com/jmikeowen/spheral We are leaving a frozen version here on SourceForge for historical reasons. Spheral++ provides a steerable parallel environment for performing coupled hydrodynamical & gravitational numerical simulations. Hydrodynamics and gravity are modelled using particle based methods (SPH and N-Body).
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  • 4
    A toolkit in C++ and python to process both experimental and simulation data of colloidal particles. Includes among others * a multiscale particle tracking algorithm [1] whose C++ implementation is optimised for 3D confocal data. Python implementation is more versatile (2D and 3D data). * a Leica file reader, * Steindhard bond orientational order calculation * a VTK file writer 1. Leocmach, M. & Tanaka, H.
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  • 5
    Open PaperOpt
    Open Source Monte Carlo Simulation platform for particle level simulation of light scattering from generated paper structures
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  • 6

    Time-Evolving Block Decimation

    TEBD simulates the dynamics of entangled quantum many-body systems.

    Time-Evolving Block Decimation (TEBD) is a new method for efficiently simulating the dynamics of entangled quantum many-body systems. It is especially suited to one-dimensional systems governed by a Hamiltonian made of local interactions. Open Source TEBD is a package, written in Fortran 95, which allows one to simulate the entangled quantum dynamics of a one-dimensional system governed by a Hamiltonian made of local interactions using TEBD. Expectation values and correlation functions,...
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  • 7

    SunlightDPD

    Open source codes related to dissipative particle dynamics

    SunlightDPD provides a home for open source codes related to the dissipative particle dynamics (DPD) simulation method. Currently the file release contains the HNC integral equation code.
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  • 8

    Java Evolutionary Computation Library

    As of 2012-12-18, this project may now be found at Google Code.

    As of 2012-12-18, this project may now be found at http://http://code.google.com/p/paba JECO is a Evolutionary Computation Library deveoloped in Java. It includes a variety of evolutionary optimization techniques such as genetic algorithm, genetic programming, evolutionary mapping methods, particle swarm optimization, ant colonies, etc.
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  • 9
    A reactor solver which uses stochastic particle methods to model particle population balances. This code is developed by the CoMo group in the chemical engineering department at the university of Cambridge (como.cheng.cam.ac.uk).
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  • 10
    molecular simulation program for anisotropic particle shape and potential
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  • 11
    Meredys (MEsoscopic REaction DYnamics Simulator) is a particle based stochastic simulation software designed to model and simulate reaction-diffusion systems. (http://www.ebi.ac.uk/compneur-srv/meredys.html)
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  • 12
    RYUON : many-particle simulation suite
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  • 13
    Integrates the Vlasov-Maxwell equations in three dimensions for multiple particle species and arbitrary physical geometries.
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