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      ESPResSo++ 2.0: Advanced methods for multiscale molecular simulation

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          Abstract

          Molecular simulation is a scientific tool dealing with challenges in material science and biology. This is reflected in a permanent development and enhancement of algorithms within scientific simulation packages. Here, we present computational tools for multiscale modeling developed and implemented within the ESPResSo++ package. These include the latest applications of the adaptive resolution scheme, the hydrodynamic interactions through a lattice Boltzmann solvent coupled to particle-based molecular dynamics, the implementation of the hierarchical strategy for equilibrating long-chained polymer melts and a heterogeneous spatial domain decomposition. The software design of ESPResSo++ has kept its highly modular C++ kernel with a Python user interface. Moreover, it was enhanced by automatic scripts parsing configurations from other established packages providing scientists with a rapid setup possibility for their simulations.

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          The lattice Boltzmann equation: theory and applications

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            Lattice-Boltzmann Method for Complex Flows

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              Multiple-relaxation-time lattice Boltzmann models in three dimensions

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                Author and article information

                Journal
                28 June 2018
                Article
                1806.10841
                e5361e9e-e05b-49fb-9b06-860e05331dc0

                http://arxiv.org/licenses/nonexclusive-distrib/1.0/

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                Custom metadata
                22 pages,7 figures, full research article
                cond-mat.soft physics.comp-ph

                Condensed matter,Mathematical & Computational physics
                Condensed matter, Mathematical & Computational physics

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