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Large Eddy Simulation of a turbulent flow past a pair of symmetric backward-facing steps: A sensitivity analysis

Duwig, Christophe LU ; Salewski, Mirko LU and Fuchs, Laszlo LU (2007) 45th AIAA Aerospace Sciences Meeting 2007 16. p.11096-11114
Abstract
Large Eddy Simulation is used to study the flow behind a pair of symmetric backward facing steps. As reported in the literature, the flow exhibits an asymmetric pattern characterized by the deflection of the jet toward of the walls. The LES results are compared to LDA measurements showing the ability of the present numerical tool to capture the complex features of the flow. Furthermore, a sensitivity study is conducted in order to assess the influence of the grid resolution, inflow boundary, channel width (aspect ratio A <sub>h</sub>) and step size (h) on the flow field. The flow was found to be weakly sensitive to the grid, assuring the quality of the simulation results. The inflow boundary influences the results only... (More)
Large Eddy Simulation is used to study the flow behind a pair of symmetric backward facing steps. As reported in the literature, the flow exhibits an asymmetric pattern characterized by the deflection of the jet toward of the walls. The LES results are compared to LDA measurements showing the ability of the present numerical tool to capture the complex features of the flow. Furthermore, a sensitivity study is conducted in order to assess the influence of the grid resolution, inflow boundary, channel width (aspect ratio A <sub>h</sub>) and step size (h) on the flow field. The flow was found to be weakly sensitive to the grid, assuring the quality of the simulation results. The inflow boundary influences the results only marginally unless low frequency fluctuations are applied. In this case, the flow field recovers symmetry with suppression of the jet bending. The jet bending has also been shown to increase with the step size h and to reduce with increasing A<sub>h</sub>. (Less)
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author
; and
organization
publishing date
type
Chapter in Book/Report/Conference proceeding
publication status
published
subject
keywords
Inflow boundary, Jet bending, Grid resolution
host publication
Collection of Technical Papers - 45th AIAA Aerospace Sciences Meeting
volume
16
pages
11096 - 11114
publisher
American Institute of Aeronautics and Astronautics
conference name
45th AIAA Aerospace Sciences Meeting 2007
conference location
Reno, NV, United States
conference dates
2007-01-08 - 2007-01-11
external identifiers
  • scopus:34250872176
ISBN
978-1-56347-890-1
language
English
LU publication?
yes
id
51f2a0d3-d092-4a9a-abf8-83d7386a51f6 (old id 643458)
date added to LUP
2016-04-04 12:13:51
date last changed
2020-08-05 03:48:31
@inproceedings{51f2a0d3-d092-4a9a-abf8-83d7386a51f6,
  abstract     = {Large Eddy Simulation is used to study the flow behind a pair of symmetric backward facing steps. As reported in the literature, the flow exhibits an asymmetric pattern characterized by the deflection of the jet toward of the walls. The LES results are compared to LDA measurements showing the ability of the present numerical tool to capture the complex features of the flow. Furthermore, a sensitivity study is conducted in order to assess the influence of the grid resolution, inflow boundary, channel width (aspect ratio A &lt;sub&gt;h&lt;/sub&gt;) and step size (h) on the flow field. The flow was found to be weakly sensitive to the grid, assuring the quality of the simulation results. The inflow boundary influences the results only marginally unless low frequency fluctuations are applied. In this case, the flow field recovers symmetry with suppression of the jet bending. The jet bending has also been shown to increase with the step size h and to reduce with increasing A&lt;sub&gt;h&lt;/sub&gt;.},
  author       = {Duwig, Christophe and Salewski, Mirko and Fuchs, Laszlo},
  booktitle    = {Collection of Technical Papers - 45th AIAA Aerospace Sciences Meeting},
  isbn         = {978-1-56347-890-1},
  language     = {eng},
  pages        = {11096--11114},
  publisher    = {American Institute of Aeronautics and Astronautics},
  title        = {Large Eddy Simulation of a turbulent flow past a pair of symmetric backward-facing steps: A sensitivity analysis},
  volume       = {16},
  year         = {2007},
}