Large-scaled simulation on the coherent vortex evolution of a jet in a cross-flow based on lattice Boltzmann method
Large eddy simulation (LES) is performed on a jet issued normally into a cross-flow using lattice Boltzmann method (LBM) and multiple graphic processing units (multi-GPUs) to study the flow characteristics of jets in cross-flow (JICF). The simulation with 8 1.50´10 grids is fulfilled with 6...
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VINCA Institute of Nuclear Sciences
2015-01-01
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doaj-53f83f463759441197ed7610642b15d92021-01-02T15:20:49ZengVINCA Institute of Nuclear SciencesThermal Science0354-98362334-71632015-01-0119397798810.2298/TSCI150606101S0354-98361500101SLarge-scaled simulation on the coherent vortex evolution of a jet in a cross-flow based on lattice Boltzmann methodShangguan Yanqin0Wang Xian1Li Yueming2Xi’an Jiaotong University, School of Aerospace, State Key Laboratory for Strength and Vibration of Mechanical Structures, Xi'an, Shaanxi, ChinaXi’an Jiaotong University, School of Aerospace, State Key Laboratory for Strength and Vibration of Mechanical Structures, Xi'an, Shaanxi, ChinaXi’an Jiaotong University, School of Aerospace, State Key Laboratory for Strength and Vibration of Mechanical Structures, Xi'an, Shaanxi, ChinaLarge eddy simulation (LES) is performed on a jet issued normally into a cross-flow using lattice Boltzmann method (LBM) and multiple graphic processing units (multi-GPUs) to study the flow characteristics of jets in cross-flow (JICF). The simulation with 8 1.50´10 grids is fulfilled with 6 K20M GPUs. With large-scaled simulation, the secondary and tertiary vortices are captured. The features of the secondary vortices and the tertiary vortices reveal that they have a great impact on the mixing between jet flow and cross-flow. The qualitative and quantitative results also indicate that the evolution mechanism of vortices is not constant, but varies with different situations. The hairpin vortex under attached jet regime originates from the boundary layer vortex of cross-flow. While, the origin of hairpin vortex in detached jet is the jet shear-layer vortex. The mean velocities imply the good ability of LBM to simulate JICF and the large loss of jet momentum in detached jet caused by the strong penetration. Besides, in our computation, a high computational performance of 1083.5 MLUPS is achieved.http://www.doiserbia.nb.rs/img/doi/0354-9836/2015/0354-98361500101S.pdfjet in a cross-flowcoherent structuresevolution mechanismlattice Boltzmann methodmultiple graphic processing units |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Shangguan Yanqin Wang Xian Li Yueming |
spellingShingle |
Shangguan Yanqin Wang Xian Li Yueming Large-scaled simulation on the coherent vortex evolution of a jet in a cross-flow based on lattice Boltzmann method Thermal Science jet in a cross-flow coherent structures evolution mechanism lattice Boltzmann method multiple graphic processing units |
author_facet |
Shangguan Yanqin Wang Xian Li Yueming |
author_sort |
Shangguan Yanqin |
title |
Large-scaled simulation on the coherent vortex evolution of a jet in a cross-flow based on lattice Boltzmann method |
title_short |
Large-scaled simulation on the coherent vortex evolution of a jet in a cross-flow based on lattice Boltzmann method |
title_full |
Large-scaled simulation on the coherent vortex evolution of a jet in a cross-flow based on lattice Boltzmann method |
title_fullStr |
Large-scaled simulation on the coherent vortex evolution of a jet in a cross-flow based on lattice Boltzmann method |
title_full_unstemmed |
Large-scaled simulation on the coherent vortex evolution of a jet in a cross-flow based on lattice Boltzmann method |
title_sort |
large-scaled simulation on the coherent vortex evolution of a jet in a cross-flow based on lattice boltzmann method |
publisher |
VINCA Institute of Nuclear Sciences |
series |
Thermal Science |
issn |
0354-9836 2334-7163 |
publishDate |
2015-01-01 |
description |
Large eddy simulation (LES) is performed on a jet issued normally into a
cross-flow using lattice Boltzmann method (LBM) and multiple graphic
processing units (multi-GPUs) to study the flow characteristics of jets in
cross-flow (JICF). The simulation with 8 1.50´10 grids is fulfilled with 6
K20M GPUs. With large-scaled simulation, the secondary and tertiary vortices
are captured. The features of the secondary vortices and the tertiary
vortices reveal that they have a great impact on the mixing between jet flow
and cross-flow. The qualitative and quantitative results also indicate that
the evolution mechanism of vortices is not constant, but varies with
different situations. The hairpin vortex under attached jet regime originates
from the boundary layer vortex of cross-flow. While, the origin of hairpin
vortex in detached jet is the jet shear-layer vortex. The mean velocities
imply the good ability of LBM to simulate JICF and the large loss of jet
momentum in detached jet caused by the strong penetration. Besides, in our
computation, a high computational performance of 1083.5 MLUPS is achieved. |
topic |
jet in a cross-flow coherent structures evolution mechanism lattice Boltzmann method multiple graphic processing units |
url |
http://www.doiserbia.nb.rs/img/doi/0354-9836/2015/0354-98361500101S.pdf |
work_keys_str_mv |
AT shangguanyanqin largescaledsimulationonthecoherentvortexevolutionofajetinacrossflowbasedonlatticeboltzmannmethod AT wangxian largescaledsimulationonthecoherentvortexevolutionofajetinacrossflowbasedonlatticeboltzmannmethod AT liyueming largescaledsimulationonthecoherentvortexevolutionofajetinacrossflowbasedonlatticeboltzmannmethod |
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1724352933585223680 |