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  • Introduction to turbulence
    ...ction to turbulence/Nature of turbulence#The turbulent world around us|The turbulent world around us]] ...Introduction to turbulence/Free turbulent shear flows|Free turbulent shear flows]] ==
    8 KB (948 words) - 12:34, 15 March 2012
  • Two equation turbulence models
    ...tion model to account for history effects like convection and diffusion of turbulent energy. ...equation model it is. Common choices are the [[Turbulence dissipation rate|turbulent dissipation]], <math>\epsilon</math>, or the [[specific turbulence dissipat
    11 KB (1,667 words) - 20:52, 25 October 2016
  • Introduction to turbulence/Nature of turbulence
    ==The turbulent world around us== The turbulent motion of fluids has captured the fancy of observers of nature for most of
    16 KB (2,597 words) - 21:12, 9 November 2016
  • V2-f models
    ...ow [[Reynolds number|Reynolds-numbers]], that does not need to make use of wall functions because it is valid upto solid walls. ...n of the damping of turbulent transport close to the wall. The anisotropic wall effects are modelled through the elliptic relaxation function <math>f</math
    6 KB (917 words) - 05:45, 7 February 2014
  • CHAM FAQ
    ...s a spatial marching integration option to handle parabolic and hyperbolic flows, as well as transonic free jets in the absence of recirculation zones. ...llection of special algorithms for computing interfacial areas, evaluating wall shear stresses, and for computing advection and diffusion near solid bounda
    37 KB (5,717 words) - 12:46, 9 December 2019
  • Turbulence length scale
    ...al quantity describing the size of the large energy-containing eddies in a turbulent flow. ...e larger than the dimension of the problem, since that would mean that the turbulent eddies are larger than the problem size.
    3 KB (428 words) - 19:56, 15 June 2012
  • K-epsilon models
    ...tion model to account for history effects like convection and diffusion of turbulent energy. ...ergy, <math>k</math>. The second transported variable in this case is the turbulent dissipation, <math>\epsilon</math>. It is the variable that determines the
    3 KB (406 words) - 16:03, 18 June 2011
  • Introduction to turbulence/Free turbulent shear flows
    ...ombustion processes and many mixing processes involve turbulent free shear flows. ...ows, they tend to become turbulent much more rapidly than the wall-bounded flows which we will discuss later. This is because the three-dimensional vorticit
    67 KB (11,204 words) - 13:42, 19 April 2016
  • Introduction to turbulence/Wall bounded turbulent flows
    ...are generally referred to as “wall-bounded flows” or “boundary layer flows”. The most obvious causes for the effects of the wall on the flow arise from the
    41 KB (7,002 words) - 13:02, 21 March 2012
  • Wray-Agarwal(WA) Turbulence Model
    '''The turbulent eddy viscosity is given by:''' '''and d is the minimum distance to the nearest wall.'''
    3 KB (458 words) - 17:19, 19 February 2021
  • Wray-Agarwal(WA) turbulence Model
    '''The turbulent eddy viscosity is given by:''' '''and d is the minimum distance to the nearest wall.'''
    3 KB (458 words) - 16:36, 19 February 2021
  • Shuai-Agarwal Turbulence Model
    ...validated by simulating several benchmark canonical wall-bounded turbulent flows with small regions of separation from NASA TMR (https://turbmodels.larc.nas '''The turbulent viscosity is given by:'''
    4 KB (611 words) - 02:52, 8 April 2021
  • Shuai-Agarwal turbulence Model
    ...validated by simulating several benchmark canonical wall-bounded turbulent flows with small regions of separation from NASA TMR (https://turbmodels.larc.nas '''The turbulent kinematic viscosity is given by:'''
    4 KB (617 words) - 19:43, 10 April 2021

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