Time-parallel simulation of the decay of homogeneous turbulence using Parareal with spatial coarsening
Direct Numerical Simulation of turbulent flows is a computationally demanding problem that requires efficient parallel algorithms. We investigate the applicability of the time-parallel Parareal algorithm to an instructional case study related to the simulation of the decay of homogeneous isotropic t...
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Published in | Computing and visualization in science Vol. 19; no. 1-2; pp. 31 - 44 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
Published |
Berlin/Heidelberg
Springer Berlin Heidelberg
01.06.2018
Springer Nature B.V Springer Verlag |
Series | Special Issue Parallel-in-Time Methods |
Subjects | |
Online Access | Get full text |
ISSN | 1432-9360 1433-0369 |
DOI | 10.1007/s00791-018-0295-0 |
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Abstract | Direct Numerical Simulation of turbulent flows is a computationally demanding problem that requires efficient parallel algorithms. We investigate the applicability of the time-parallel
Parareal
algorithm to an instructional case study related to the simulation of the decay of homogeneous isotropic turbulence in three dimensions. We combine a
Parareal
variant based on explicit time integrators and spatial coarsening with the space-parallel
Hybrid
Navier–Stokes solver. We analyse the performance of this space–time parallel solver with respect to speedup and quality of the solution. The results are compared with reference data obtained with a classical explicit integration, using an error analysis which relies on the energetic content of the solution. We show that a single
Parareal
iteration is able to reproduce with high fidelity the main statistical quantities characterizing the turbulent flow field. |
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AbstractList | Direct Numerical Simulation of turbulent flows is a computationally demanding problem that requires efficient parallel algorithms. We investigate the applicability of the time-parallel Parareal algorithm to an instructional case study related to the simulation of the decay of homogeneous isotropic turbulence in three dimensions. We combine a Parareal variant based on explicit time integrators and spatial coarsening with the space-parallel Hybrid Navier–Stokes solver. We analyse the performance of this space–time parallel solver with respect to speedup and quality of the solution. The results are compared with reference data obtained with a classical explicit integration, using an error analysis which relies on the energetic content of the solution. We show that a single Parareal iteration is able to reproduce with high fidelity the main statistical quantities characterizing the turbulent flow field. Direct Numerical Simulation of turbulent flows is a computationally demanding problem that requires efficient parallel algorithms. We investigate the applicability of the time-parallel Parareal algorithm to an instructional case study related to the simulation of the decay of homogeneous isotropic turbulence in three dimensions. We combine a Parareal variant based on explicit time integrators and spatial coarsening with the space-parallel Hybrid Navier–Stokes solver. We analyse the performance of this space–time parallel solver with respect to speedup and quality of the solution. The results are compared with reference data obtained with a classical explicit integration, using an error analysis which relies on the energetic content of the solution. We show that a single Parareal iteration is able to reproduce with high fidelity the main statistical quantities characterizing the turbulent flow field. |
Author | Lunet, Thibaut Gratton, Serge Bodart, Julien Vasseur, Xavier |
Author_xml | – sequence: 1 givenname: Thibaut surname: Lunet fullname: Lunet, Thibaut email: Thibaut.Lunet@unige.ch organization: ISAE-SUPAERO, CERFACS – sequence: 2 givenname: Julien surname: Bodart fullname: Bodart, Julien organization: ISAE-SUPAERO – sequence: 3 givenname: Serge surname: Gratton fullname: Gratton, Serge organization: INPT-IRIT, University of Toulouse and ENSEEIHT – sequence: 4 givenname: Xavier surname: Vasseur fullname: Vasseur, Xavier organization: ISAE-SUPAERO |
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CitedBy_id | crossref_primary_10_1007_s10915_024_02596_0 crossref_primary_10_1016_j_amc_2023_128198 crossref_primary_10_1016_j_compfluid_2023_105910 crossref_primary_10_1016_j_cma_2024_116880 crossref_primary_10_1016_j_jcp_2019_109156 crossref_primary_10_1007_s00791_020_00328_z crossref_primary_10_1002_nla_2314 crossref_primary_10_1137_22M1487163 crossref_primary_10_1016_j_cpc_2020_107325 crossref_primary_10_1137_21M1433149 crossref_primary_10_1016_j_jcpx_2020_100057 crossref_primary_10_1186_s13362_023_00134_5 crossref_primary_10_1007_s00791_020_00332_3 crossref_primary_10_1007_s00791_020_00333_2 |
Cites_doi | 10.1016/0021-9991(92)90324-R 10.1016/j.jcp.2009.10.028 10.1017/S0022112091001957 10.1016/j.jcp.2010.05.012 10.1016/j.jocs.2016.12.006 10.1006/jcph.1994.1112 10.1063/1.2907227 10.1016/j.parco.2010.10.004 10.1137/05064607X 10.1016/S0764-4442(00)01793-6 10.1002/nme.2585 10.1017/jfm.2012.573 10.1016/j.cpc.2014.09.019 10.1017/CBO9780511840531 10.1016/j.jcp.2012.05.016 10.1007/978-3-319-23321-5_3 10.1002/pamm.201410490 10.1016/j.amc.2014.12.055 10.1007/3-540-26825-1_44 10.2140/camcos.2010.5.265 10.1063/1.1539855 10.1007/3-540-26825-1_46 10.1137/110861002 10.1007/s00791-015-0246-y 10.1016/j.jcp.2012.07.028 10.1002/nme.1653 10.1016/j.compfluid.2012.02.015 10.1002/nme.1296 10.1007/978-3-319-10705-9_19 10.1051/proc:082508 10.1007/978-3-319-09063-4_2 10.7551/mitpress/4789.001.0001 10.1145/2503210.2503265 |
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Keywords | Space–time parallelism Navier–Stokes equations Direct numerical simulation High-order method in space Explicit time integrator Direct Numerical Simulation |
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Snippet | Direct Numerical Simulation of turbulent flows is a computationally demanding problem that requires efficient parallel algorithms. We investigate the... |
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SubjectTerms | Algorithms Calculus of Variations and Optimal Control; Optimization Coarsening Computational fluid dynamics Computational Mathematics and Numerical Analysis Computer Applications in Chemistry Computer simulation Decay Direct numerical simulation Engineering Sciences Error analysis Homogeneous turbulence Integrators Isotropic turbulence Iterative methods Mathematics Mathematics and Statistics Navier-Stokes equations Numerical Analysis Other Simulation Special Issue Parallel-in-Time Methods Turbulent flow Visualization |
Title | Time-parallel simulation of the decay of homogeneous turbulence using Parareal with spatial coarsening |
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