Visualization for Molecular Dynamics Simulation of Gas and Metal Surface Interaction

The development of methods, algorithms and applications for visualization of molecular dynamics simulation outputs is discussed. The visual analysis of the results of such calculations is a complex and actual problem especially in case of the large scale simulations. To solve this challenging task i...

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Main Authors: Puzyrkov D., Polyakov S., Podryga V.
Format: Article
Language:English
Published: EDP Sciences 2016-01-01
Series:EPJ Web of Conferences
Online Access:http://dx.doi.org/10.1051/epjconf/201610802037
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spelling doaj-88a483534c0e442b83a7eeba8d08be2a2021-08-02T06:47:48ZengEDP SciencesEPJ Web of Conferences2100-014X2016-01-011080203710.1051/epjconf/201610802037epjconf_mmcp2016_02037Visualization for Molecular Dynamics Simulation of Gas and Metal Surface InteractionPuzyrkov D.0Polyakov S.1Podryga V.2Keldysh Institute of Applied Mathematics (Russian Academy of Sciences)Keldysh Institute of Applied Mathematics (Russian Academy of Sciences)Keldysh Institute of Applied Mathematics (Russian Academy of Sciences)The development of methods, algorithms and applications for visualization of molecular dynamics simulation outputs is discussed. The visual analysis of the results of such calculations is a complex and actual problem especially in case of the large scale simulations. To solve this challenging task it is necessary to decide on: 1) what data parameters to render, 2) what type of visualization to choose, 3) what development tools to use. In the present work an attempt to answer these questions was made. For visualization it was offered to draw particles in the corresponding 3D coordinates and also their velocity vectors, trajectories and volume density in the form of isosurfaces or fog. We tested the way of post-processing and visualization based on the Python language with use of additional libraries. Also parallel software was developed that allows processing large volumes of data in the 3D regions of the examined system. This software gives the opportunity to achieve desired results that are obtained in parallel with the calculations, and at the end to collect discrete received frames into a video file. The software package “Enthought Mayavi2” was used as the tool for visualization. This visualization application gave us the opportunity to study the interaction of a gas with a metal surface and to closely observe the adsorption effect.http://dx.doi.org/10.1051/epjconf/201610802037
collection DOAJ
language English
format Article
sources DOAJ
author Puzyrkov D.
Polyakov S.
Podryga V.
spellingShingle Puzyrkov D.
Polyakov S.
Podryga V.
Visualization for Molecular Dynamics Simulation of Gas and Metal Surface Interaction
EPJ Web of Conferences
author_facet Puzyrkov D.
Polyakov S.
Podryga V.
author_sort Puzyrkov D.
title Visualization for Molecular Dynamics Simulation of Gas and Metal Surface Interaction
title_short Visualization for Molecular Dynamics Simulation of Gas and Metal Surface Interaction
title_full Visualization for Molecular Dynamics Simulation of Gas and Metal Surface Interaction
title_fullStr Visualization for Molecular Dynamics Simulation of Gas and Metal Surface Interaction
title_full_unstemmed Visualization for Molecular Dynamics Simulation of Gas and Metal Surface Interaction
title_sort visualization for molecular dynamics simulation of gas and metal surface interaction
publisher EDP Sciences
series EPJ Web of Conferences
issn 2100-014X
publishDate 2016-01-01
description The development of methods, algorithms and applications for visualization of molecular dynamics simulation outputs is discussed. The visual analysis of the results of such calculations is a complex and actual problem especially in case of the large scale simulations. To solve this challenging task it is necessary to decide on: 1) what data parameters to render, 2) what type of visualization to choose, 3) what development tools to use. In the present work an attempt to answer these questions was made. For visualization it was offered to draw particles in the corresponding 3D coordinates and also their velocity vectors, trajectories and volume density in the form of isosurfaces or fog. We tested the way of post-processing and visualization based on the Python language with use of additional libraries. Also parallel software was developed that allows processing large volumes of data in the 3D regions of the examined system. This software gives the opportunity to achieve desired results that are obtained in parallel with the calculations, and at the end to collect discrete received frames into a video file. The software package “Enthought Mayavi2” was used as the tool for visualization. This visualization application gave us the opportunity to study the interaction of a gas with a metal surface and to closely observe the adsorption effect.
url http://dx.doi.org/10.1051/epjconf/201610802037
work_keys_str_mv AT puzyrkovd visualizationformoleculardynamicssimulationofgasandmetalsurfaceinteraction
AT polyakovs visualizationformoleculardynamicssimulationofgasandmetalsurfaceinteraction
AT podrygav visualizationformoleculardynamicssimulationofgasandmetalsurfaceinteraction
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