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Difference between revisions of "Orr-Sommerfeld"

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{{Infobox
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|Title = Orr-Sommerfeld
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|Benchmark ID = orrSommerfeld_n100m1q1
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|Category = slicot
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|System-Class = LTI-FOS
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|nstates = 100
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|ninputs = 1
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|noutputs = 1
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|nparameters = 0
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|components = A, B, C
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|License = NA
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|Creator = [[User:Himpe]]
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|Editor =
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* [[User:Himpe]]
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|Zenodo-link = NA
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}}
   
 
==Description: Orr-Sommerfeld Operator for Couette Flow==
 
==Description: Orr-Sommerfeld Operator for Couette Flow==

Latest revision as of 11:37, 30 November 2023


Orr-Sommerfeld
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

Christian Himpe

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 A 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 A matrix! For B = C^\intercal
any normalized vector B^\intercal B = 1, can be chosen.

Dimensions

System structure:


\begin{array}{rcl}
\dot{x}(t) &=& Ax(t) + Bu(t) \\
y(t) &=& Cx(t)
\end{array}

System dimensions:

A \in \mathbb{R}^{100 \times 100}, B \in \mathbb{R}^{100 \times 1}, C \in \mathbb{R}^{1 \times 100}.


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

  1. 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.
  2. 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. 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.