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Dynamics / Mauna Kea / Reynolds number / Turbulence / Computational fluid dynamics / Boundary layer / Viscosity / MEMO Model / Laminar flow / Aerodynamics / Fluid dynamics / Fluid mechanics


NUMERICAL SIMULATION OF AIRFLOW OVER POTENTIAL TELESCOPE SITES DAVID S. DE YOUNG Kitt Peak National Observatory, National Optical Astronomy Observatories,’ 950 N. Cherry Avenue, P.O. Box 26732, Tucson, Arizona
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Document Date: 2008-05-30 19:38:35


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File Size: 1,22 MB

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City

Tucson / /

Company

Fluid Dynamics International Inc. / NUMERICAL TECHNIQUE AND SOFTWARE / /

Country

Chile / /

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Facility

San Diego Supercomputer Center / University of California / DE YOUNG Kitt Peak National Observatory / Infrared Telescope Facility / /

IndustryTerm

turbulent kinetic energy / given proposed telescope site / post processing / thermal energy / computing / given site / turbulent energy / telescope site / turbulent energy dissipation rate / active mirror control technology / modeling the turbulent kinetic energy / /

NaturalFeature

Mountain et al. / Mauna Kea / /

Organization

Department of Applied Mechanics and Engineering Sciences / San Diego Supercomputer Center / U.S. Securities and Exchange Commission / RICHARD D. CHARLES San Diego Supercomputer Center / University of California at San Diego / /

Person

RICHARD D. CHARLES / /

Position

General / Cray Y-MP / /

ProvinceOrState

Hawaii / Arizona / /

Technology

SIMULATION / active mirror control technology / /

SocialTag