Turbulence Modelling 39 - kOmegaSST Model part ix Production Limiter (Menter 1994)

Turbulence Modelling 39 - kOmegaSST Model part ix Production Limiter (Menter 1994)

Subscribers:
9,750
Published on ● Video Link: https://www.youtube.com/watch?v=4r_CskKj2k8



Duration: 33:48
102 views
5


Petroleum Downstream Crash Course Playlist:
https://www.youtube.com/playlist?list=PLhPfNw4V4_YQ13CnhacUqEVk-tZlU4ISE

OpenFOAM for Windows 10 Beginner Playlist
https://www.youtube.com/playlist?list=PLhPfNw4V4_YRhBU4IqSaToQ8_X543YQsZ

OpenFOAM Intermediate Playlist
https://www.youtube.com/playlist?list=PLhPfNw4V4_YSpWX6mSOlwWEOKVa6i_iuE

OpenFOAM Heat Transfer Playlist
https://www.youtube.com/playlist?list=PLhPfNw4V4_YR2Qa3Q9-AzNSF2J9Dc4_qT

Radiation Heat Transfer Learning Journal:
https://www.youtube.com/watch?v=uUzh9kh-WTo&list=PLhPfNw4V4_YRUUVUydQp-n6U-7uu1kJof

Turbulence Modelling Playlist
https://www.youtube.com/watch?v=F_Rxv9uMM3g&list=PLhPfNw4V4_YSnbYkJIBQ1kRN06Mmxe2Be

cfd online near wall treatments for k-omega models
https://www.cfd-online.com/Wiki/Near-wall_treatment_for_k-omega_models

cfd online two equation models wall functions
https://www.cfd-online.com/Wiki/Two_equation_models#cite_note-1

A Thorough Description of How Wall Functions are Implemented in OpenFOAM (Fangqing Liu)
http://www.tfd.chalmers.se/~hani/kurser/OS_CFD_2016/FangqingLiu/openfoamFinal.pdf

Near-wall behavior of RANS turbulence models
and implications for wall functions
http://citeseerx.ist.psu.edu/viewdoc/download?doi=10.1.1.584.2507&rep=rep1&type=pdf

Law of the wall wikipedia
https://en.wikipedia.org/wiki/Law_of_the_wall

Kalitzin, G., Medic, G., Iaccarino, G., & Durbin, P. (2005). Near-wall behavior of RANS turbulence models and implications for wall functions. Journal of Computational Physics, 204(1), 265-291.

To show that the density is missing in cfd-online.com

K Omega SST improvements paper
http://cfd.mace.manchester.ac.uk/twiki/pub/Main/CDAdapcoMeetingsM4/AIAA_98-2554-CP.PS.pdf

Hellsten, A. (1998). Some improvements in Menter's k-omega SST turbulence model. In 29th AIAA, Fluid Dynamics Conference (p. 2554).

10 years of industrial experience with K Omega SST (includes heat transfer)
http://citeseerx.ist.psu.edu/viewdoc/download?doi=10.1.1.460.2814&rep=rep1&type=pdf

Menter, F., & Esch, T. (2001, November). Elements of industrial heat transfer predictions. In 16th Brazilian Congress of Mechanical Engineering (COBEM) (Vol. 109, p. 650).

Menter's 1994 Paper for k Omega SST
Menter, F. R. (1994). Two-equation eddy-viscosity turbulence models for engineering applications. AIAA journal, 32(8), 1598-1605.
https://arc.aiaa.org/doi/pdf/10.2514/3.12149

Adverse Pressure Gradients - Wikipedia
https://en.wikipedia.org/wiki/Adverse_pressure_gradient

Flow Separation - Wikipedia
https://en.wikipedia.org/wiki/Flow_separation

OpenFOAM k Omega SST documentation
https://www.openfoam.com/documentation/guides/latest/doc/guide-turbulence-ras-k-omega-sst.html

Menter's 2003 Model
https://www.openfoam.com/documentation/guides/latest/doc/citelist.html#CITEREF_nasa_langley_research_center_menter_2015

NASA guide to turbulence models (k Omega SST)
https://turbmodels.larc.nasa.gov/sst.html

Menter's 2003 k Omega SST model
Menter, F. R., Kuntz, M., & Langtry, R. (2003). Ten years of industrial experience with the SST turbulence model. Turbulence, heat and mass transfer, 4(1), 625-632.
http://citeseerx.ist.psu.edu/viewdoc/download?doi=10.1.1.460.2814&rep=rep1&type=pdf




Other Videos By Theo Ong Science and Engineering


2020-04-27Turbulence Modelling 49 - LES Dynamic Smagorinsky Filtering Procedure In Detail
2020-04-27Turbulence Modelling 48 - LES Dynamic Smagorinsky Filtering Procedure Preliminary Steps Part ii
2020-04-27Turbulence Modelling 47 - LES Dynamic Smagorinsky Filtering Procedure Preliminary Steps
2020-04-27Turbulence Modelling 46 - LES Dynamic Smagorinsky Filtering and Frequency Plots
2020-04-23Turbulence Modelling 45 - LES Dynamic Smagorinsky Motivations and Basic Concepts
2020-04-22Turbulence Modelling 44 - Spalart Allmaras Model Numerical Stability Trip Terms
2020-04-22Turbulence Modelling 43 - Spalart Allmaras Model Viscous Sublayer and Numerical Stability Trip Term
2020-04-22Turbulence Modelling 42 - Spalart Allmaras Model Wall Treatment log law region
2020-04-22Turbulence Modelling 41 - Spalart Allmaras Model Production and Diffusion Terms
2020-04-21Turbulence Modelling 40 - kOmegaSST Model part x Production Limiter Menter 2003
2020-04-21Turbulence Modelling 39 - kOmegaSST Model part ix Production Limiter (Menter 1994)
2020-04-20Turbulence Modelling 38 - kOmegaSST Model part viii Blending Functions and Wall Functions
2020-04-20Turbulence Modelling 37 - kOmegaSST Model part vii Blending Functions and Wall Functions
2020-04-19Turbulence Modelling 36 - kOmegaSST Model part vi Blending Functions and Wall Functions
2020-04-19Turbulence Modelling 35 - kOmegaSST Model part v Blending Functions and Wall Functions
2020-04-19Turbulence Modelling 34 - kOmegaSST Model part iv Blending Functions and Wall Functions
2020-04-19Turbulence Modelling 33 - kOmegaSST Model part iii Blending Functions and Wall Functions
2020-04-19Turbulence Modelling 32 - kOmegaSST Model part ii Blending Functions
2020-04-19OpenFOAM Intermediate - 51 Introduction to pimpleFoam part v relaxation factors and residual ctrl
2020-04-19OpenFOAM Intermediate - 50 Introduction to pimpleFoam part iv relaxation factors intro
2020-04-16Turbulence Modelling 31 - kOmegaSST Model part i



Tags:
Engineering
Math
Science
Thermodynamics
Fluid Mechanics
Chemical
Nuclear
Chemical Potential
Fugacity
Enthalpy
Internal Energy
Entropy
First Law
Second law
Gibbs Free Energy
Hemholtz free energy
heat capacity
constant volume
constant pressure
tutorial
petroleum
oil
refinery
downstream
crude
jet
gasoline
gasoil
diesel
computational fluid dynamics
CFD
OpenFoam
Open
Foam
Fluid mechanics
heat transfer
turbulence
conduction
convection
radiation