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{{Infobox | |||
|Title = Orr-Sommerfeld | |||
|Benchmark ID = orrSommerfeld_n100m1q1 | |||
|Category = slicot | |||
|System-Class = LTI-FOS | |||
|nstates = 100 | |||
|ninputs = 1 | |||
|noutputs = 1 | |||
|nparameters = 0 | |||
|components = A, B, C | |||
|License = NA | |||
|Creator = [[User:Himpe]] | |||
|Editor = | |||
* [[User:Himpe]] | |||
|Zenodo-link = NA | |||
}} | |||
==Description: Orr-Sommerfeld Operator for Couette Flow== | ==Description: Orr-Sommerfeld Operator for Couette Flow== | ||
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==Data== | ==Data== | ||
The system matrix <math>A</math> is available from the [http://slicot.org/20-site/126-benchmark-examples-for-model-reduction SLICOT benchmarks] page: [http://slicot.org/objects/software/shared/bench-data/ | The system matrix <math>A</math> is available from the [http://slicot.org/20-site/126-benchmark-examples-for-model-reduction SLICOT benchmarks] page: [http://slicot.org/objects/software/shared/bench-data/Orr-Som.zip Orr-Som.zip] and is stored as MATLAB [https://www.mathworks.com/help/matlab/import_export/mat-file-versions.html .mat] file. | ||
Note that the data file only contains an <math>A</math> matrix! For <math>B = C^\intercal | Note that the data file only contains an <math>A</math> matrix! For <math>B = C^\intercal | ||
Latest revision as of 09:37, 30 November 2023
| Background | |
|---|---|
| Benchmark ID |
orrSommerfeld_n100m1q1 |
| Category |
slicot |
| System-Class |
LTI-FOS |
| Parameters | |
| nstates |
100
|
| ninputs |
1 |
| noutputs |
1 |
| nparameters |
0 |
| components |
A, B, C |
| Copyright | |
| License |
NA |
| Creator | |
| Editor | |
| Location | |
|
NA | |
Description: Orr-Sommerfeld Operator for Couette Flow
This benchmark models Orr-Sommerfeld Operator for a Couette flow. More details can be found in [1] and [2], [3].
Origin
This benchmark is part of the SLICOT Benchmark Examples for Model Reduction[3].
Data
The system matrix is available from the SLICOT benchmarks page: Orr-Som.zip and is stored as MATLAB .mat file.
Note that the data file only contains an matrix! For any normalized vector , can be chosen.
Dimensions
System structure:
System dimensions:
, , .
Citation
To cite this benchmark, use the following references:
- For the benchmark itself and its data:
- Niconet e.V., SLICOT - Subroutine Library in Systems and Control Theory, http://www.slicot.org
@MANUAL{slicot_orrs,
title = {{SLICOT} - Subroutine Library in Systems and Control Theory},
organization = {Niconet e.V.}
address = {\url{http://www.slicot.org}},
key = {SLICOT}
}
- For the background on the benchmark:
@ARTICLE{FarI01,
author = {B.F. Farrell and P.J. Ioannou},
title = {Accurate Low-Dimensional Approximation of the Linear Dynamics of Fluid Flow},
journal = {Journal of the Atmospheric Sciences},
volume = {58},
number = {18},
pages = {2771--2789},
year = {2001},
doi = {10.1175/1520-0469(2001)058<2771:ALDAOT>2.0.CO;2}
}
References
- ↑ B.F. Farrell, P.J. Ioannou. Accurate Low-Dimensional Approximation of the Linear Dynamics of Fluid Flow. Journal of the Atmospheric Sciences, 58(18): 2771--2789, 2001.
- ↑ Y. Chahlaoui, P. Van Dooren, A collection of Benchmark examples for model reduction of linear time invariant dynamical systems, Working Note 2002-2: 2002.
- ↑ 3.0 3.1 Y. Chahlaoui, P. Van Dooren, Benchmark Examples for Model Reduction of Linear Time-Invariant Dynamical Systems, Dimension Reduction of Large-Scale Systems, Lecture Notes in Computational Science and Engineering, vol 45: 379--392, 2005.