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Fluid dynamics / Instability / Reynolds number / Turbulence / Stability / Navier–Stokes equations / Boundary layer / Lift / Laminar-turbulent transition / Fluid mechanics / Aerodynamics / Physics


Theor. Comput. Fluid Dyn. DOI[removed]s00162[removed]O R I G I NA L A RT I C L E Vassilis Theofilis · Tim Colonius
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Document Date: 2013-01-23 17:29:51


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City

Manchester / Madrid / Crete / Chang / /

Company

Oxford University Press / Cambridge University Press / Dynamical Systems / Sharma A.S. / /

Country

Israel / Greece / /

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Facility

California Institute of Technology / /

IndustryTerm

stable systems / unstable systems / machinery / numerical algorithms / fluid flow applications / nonlinear and large systems / eigenvalue problem solutions / restricted air travel / numerical solution / /

Movie

A.I. / /

Organization

California Institute of Technology / Cambridge University / Air Force Material Command / European office of Aerospace Research and Development / US Government / US Federal Reserve / Air Force office of Scientific Research / Universidad Politécnica de Madrid / Oxford University / Theofilis School of Aeronautics / Royal Society London / /

Person

Anatoly Ruban / Peter Duck / Uwe Dallmann / James Lighthill / Wayne Donaldson / Surya Surampudi / Tim Colonius / Charbel Raffoul / /

Position

author / Air Force Liaison Officer / King / keynote speaker / RT / partial-derivative EVP / EVP / controller for the flow / controller / /

ProvinceOrState

South Carolina / /

PublishedMedium

the Royal Society London journal / /

Technology

technology of partial-derivative EVP solutions / flow control / Aero / heat transfer / simulation / /

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