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Title: Investigation of Flow Over an Airfoil Using a Hybrid Detached Eddy Simulation–Algebraic Stress Turbulence Model

Journal Article · · Journal of Energy Resources Technology
DOI:https://doi.org/10.1115/1.4036050· OSTI ID:1536807
 [1];  [2]
  1. Department of Mechanical Engineering,University of Wisconsin-Milwaukee,3200 N. Cramer Street,Milwaukee, WI 53211e-mail: beyhagh2@uwm.edu
  2. Fellow ASMEDepartment of Mechanical Engineering,University of Wisconsin-Milwaukee,3200 N. Cramer Street,Milwaukee, WI 53211e-mail: amano@uwm.edu

Not provided.

Research Organization:
Univ. of Wisconsin, Madison, WI (United States)
Sponsoring Organization:
USDOE Office of Energy Efficiency and Renewable Energy (EERE)
DOE Contract Number:
EE0000545
OSTI ID:
1536807
Journal Information:
Journal of Energy Resources Technology, Vol. 139, Issue 5; ISSN 0195-0738
Publisher:
ASME
Country of Publication:
United States
Language:
English

References (12)

Assessment of explicit algebraic Reynolds-stress turbulence models in aerodynamic computations journal October 2005
An explicit algebraic Reynolds stress model for incompressible and compressible turbulent flows journal January 2000
Progress in the development of a Reynolds-stress turbulence closure journal April 1975
On explicit algebraic stress models for complex turbulent flows journal September 1993
A family of explicit algebraic models for Reynolds stresses and passive scalar fluxes journal October 2012
Application of an Explicit Algebraic Reynolds Stress Model within a Hybrid LES–RANS Method journal June 2008
A numerical study of three-dimensional turbulent channel flow at large Reynolds numbers journal April 1970
A hybrid RANS-LES approach with delayed-DES and wall-modelled LES capabilities journal December 2008
A more general effective-viscosity hypothesis journal November 1975
A simplified explicit algebraic model for the Reynolds stresses journal October 2007
Recent advances on the numerical modelling of turbulent flows journal January 2015
1 - Linear and Nonlinear Eddy Viscosity Models book January 2002

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