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Aerodynamics / De Laval nozzle / Speed of sound / Turbulence / Wave / Fluid mechanics / Fluid dynamics / Dynamics


Inlet conditions for wave packet models in turbulent jets based on eigenmode decomposition of large eddy simulation data Daniel Rodríguez, Aniruddha Sinha, Guillaume A. Brès, and Tim Colonius Citation: Phys. Fluids 25,
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Document Date: 2013-10-16 12:17:51


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File Size: 1,24 MB

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City

Madrid / Pasadena / Palo Alto / /

Company

Cascade Technologies / Spain 3 Cascade Technologies Inc. / AIP Publishing LLC / C 2013 AIP Publishing LLC / United Technologies / performed using Cascade Technologies’ flow solver / /

Country

Jordan / United States / Brazil / /

Currency

USD / /

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Facility

United Technologies Research Center / California Institute of Technology / /

IndustryTerm

turbulent kinetic energy fluctuations / fluctuation energy content / usual scalar product / turbulent kinetic energy / energy equations / linear spatial operator / mathematical solutions / post-processing / measurement technologies / amplified wave solutions / unstable solutions / energy content / numerical solution / energy / /

NaturalFeature

PSE inlet / /

Organization

California Institute of Technology / Division of Engineering and Applied Science / U.S. Securities and Exchange Commission / Universidad Polit´ecnica de Madrid / /

Person

Guillaume A. Brès / Aniruddha Sinha / Daniel Rodr´ıguez / Tim Colonius / Daniel Rodríguez / /

Position

Author / locally parallel linear stability EVP / following matrix EVP / matrix EVP / representative / EVP / representative of the nozzle lip region / linear EVP / local EVP / /

Product

The jet / /

ProvinceOrState

California / /

Technology

radiation / measurement technologies / simulation / /

URL

http /

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