A self-contained, automated methodology for optimal flow control validated for transition delay

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Institute for Computer Applications in Science and Engineering, NASA Langley Research Center, National Technical Information Service, distributor , Hampton, VA, [Springfield, Va
Blowing., Boundary layer control., Boundary layer flow., Boundary layer transition., Optimal control., Suction., Unsteady
StatementRonald D. Joslin ... [et al.].
SeriesICASE report -- no. 95-64., NASA contractor report -- 198215., NASA contractor report -- NASA CR-198215.
ContributionsJoslin, Ronald D., Institute for Computer Applications in Science and Engineering.
The Physical Object
FormatMicroform
Pagination1 v.
ID Numbers
Open LibraryOL15419890M

Get this from a library. A self-contained, automated methodology for optimal flow control validated for transition delay. [Ronald D Joslin; Institute for Computer Applications in Science and Engineering.;].

A self-contained, automated methodology for active flow control is described, which couples the time-dependent Navier-Stokes system with an adjoint Navier-Stokes system and optimality conditions. Linear optimal control theory is used for obtaining stabilizing feedback control systems. An expression for the region of stability of the system is derived.

A Self-Contained, Automated Methodology for Optimal Flow Control Validated for Transition Delay,” AIAA J., 35, pp. Cited by: Active control of instabilities in laminar boundary-layer flow -- part II: use of sensors and spectral 16 controller.

AIAA Journal, 33, Joslin, R., Eriebacher, G., & Hussaini, M. Active control of instabilities in laminar boundary-layer flow -- overview and concept validation.

JOURNAL OF FLUIDS ENGINEERING, A reduced finite difference scheme based on singular value decomposition and proper orthogonal decomposition for Burgers equation M.Y. HussainiA self-contained automated methodology for optimal flow control validated for transition delay. AIAA Journal, 35 (), pp.

Cited by: Review of Some Fundamentals of Data Processing. Authors; Authors and affiliations; A reduced-order approach for optimal control of fluids using proper orthogonal decomposition, Int. Numer. A self-contained, automated methodology for optimal flow control validated for transition delay, ICASE Rep.1–31 () Google Scholar.

A Self-Contained, Automated Methodology for Optimal Flow Control Validated for Transition Delay (ICASE Report ). Nasa Langley Research Center. Eidson, T. M., & Erlebacher, G. The remaining chapters provide self-contained investigations of the G-machine, SKI combinator reduction, and the data flow approach for implementing the functional programming paradigm.

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A self-contained automated methodology for optimal flow control validated for transition delay.

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