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Enstrophy and kinetic energy data from 3D Taylor-Green vortex simulations

Enstrophy and kinetic energy data from 3D Taylor-Green vortex simulations
Enstrophy and kinetic energy data from 3D Taylor-Green vortex simulations
Enstrophy and kinetic energy data from four 3D Taylor-Green vortex simulations, using uniform grids of 64^3, 128^3, 256^3, and 512^3 solution points. The simulations were performed using the OpenSBLI code developed at the University of Southampton.Dataset to support: Jammy, Satya, Jacobs, Christian and Sandham, Neil (2016) Performance evaluation of explicit finite difference algorithms with varying amounts of computational and memory intensity. Journal of Computational Science, 1-15.
Taylor-Green vortex, simulation, finite difference method
University of Southampton
Jammy, Satya
5267fe44-6c22-473c-b9f0-8e1df884fada
Jacobs, Christian
0ffde78b-6ae2-4b44-a916-666f6be2b92c
Sandham, Neil
0024d8cd-c788-4811-a470-57934fbdcf97
Jammy, Satya
5267fe44-6c22-473c-b9f0-8e1df884fada
Jacobs, Christian
0ffde78b-6ae2-4b44-a916-666f6be2b92c
Sandham, Neil
0024d8cd-c788-4811-a470-57934fbdcf97

Jammy, Satya, Jacobs, Christian and Sandham, Neil (2016) Enstrophy and kinetic energy data from 3D Taylor-Green vortex simulations. University of Southampton doi:10.5258/SOTON/401892 [Dataset]

Record type: Dataset

Abstract

Enstrophy and kinetic energy data from four 3D Taylor-Green vortex simulations, using uniform grids of 64^3, 128^3, 256^3, and 512^3 solution points. The simulations were performed using the OpenSBLI code developed at the University of Southampton.Dataset to support: Jammy, Satya, Jacobs, Christian and Sandham, Neil (2016) Performance evaluation of explicit finite difference algorithms with varying amounts of computational and memory intensity. Journal of Computational Science, 1-15.

Other 512.dat - Dataset
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Other 256.dat - Dataset
Available under License Creative Commons Attribution.
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Other 128.dat - Dataset
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Other 64.dat - Dataset
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More information

Published date: 2016
Keywords: Taylor-Green vortex, simulation, finite difference method
Organisations: Aeronautics, Astronautics & Comp. Eng, Aerodynamics & Flight Mechanics Group
Projects:
Future-proof massively-parallel execution of multi-block applications
Funded by: UNSPECIFIED (EP/K038567/1)
1 October 2013 to 30 September 2016
Enabling Exascale Fluid Dynamics Simulations (ExaFLOW)
Funded by: UNSPECIFIED (671571)
1 October 2015 to 30 September 2018
UK Turbulence Consortium
Funded by: UNSPECIFIED (EP/L000261/1)
1 July 2013 to 30 June 2018

Identifiers

Local EPrints ID: 401892
URI: https://eprints.soton.ac.uk/id/eprint/401892
PURE UUID: bb5c68b8-cdce-4ec4-8c50-d510b1a4fcc7
ORCID for Satya Jammy: ORCID iD orcid.org/0000-0002-8099-8573
ORCID for Christian Jacobs: ORCID iD orcid.org/0000-0002-0034-4650
ORCID for Neil Sandham: ORCID iD orcid.org/0000-0002-5107-0944

Catalogue record

Date deposited: 25 Oct 2016 10:46
Last modified: 06 Jun 2018 12:55

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Contributors

Creator: Satya Jammy ORCID iD
Creator: Christian Jacobs ORCID iD
Creator: Neil Sandham ORCID iD

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