CFD analysis of ONERA M6 wing - Part 2 Hexa Meshing

High quality hexa meshing of ONERA M6 for most accurate and authentic results for CFD validation

4.08 (6 reviews)
Udemy
platform
English
language
Engineering
category
instructor
34
students
3 hours
content
Oct 2022
last update
$49.99
regular price

What you will learn

Importing files into ICEMCFD

Thinking about the grid toplogy

creating hexa mesh

creating three meshes

Description

In this course you will learn about hexa meshing of ONERA M6 wing. In first part we have made geometry of ONERA M6 wing in Solidworks and now same geometry will used for making the grid.


ONERA M6 is a classical  test case for CFD validation. Although geometry is simple, but the flow field involves complex flow features such as  transonic flow (Mach No. 0.7 - 0.92) with shocks, boundary layer separation etc. The ONERA M6 wing was designed in 1972 by the ONERA Aerodynamics Department as an experimental geometry for studying three-dimensional, high Reynolds number flows. ONERA is a swept back wing, with half span. It is external third of M5 Wing without twist.


In this three part course series, you will learn about the conducting CFD analysis of ONERA M6 wing as per data given by  AGARD AR 138 1979 by Schmitt, V. and F. Charpin.


Learning outcomes of this course:
1. At the end of this three part course/tutorial, student will be able to perform CFD simulation of exteneral, viscous, compressible flow around 3D geometry at transonic conditions using various turbulence models and appropriate Y+ values.

2. Student will be able to understand/learn all processes involved in high fidelity CFD analysis such as geometry creation, meshing, CFD setup, solution and post processing.

3. Student will be able to validate CFD results against experimental data from AGARD report.

4. Following things will be covered:

  • Geometry generation in Solidworks

  • Hemisphere domain in Spaceclaim

  • Hexa meshing in ICEMCFD

  • Mesh import, boundary conditions specification, material properties, solver settings, report definitions, hybrid initialization etc.

  • Steady state, 3D Reynolds-Averaged Navier-Stokes

  • Spalart-Allmaras, K-Epislon, Shear Stress Transport SST and transition turbulence models

  • 2nd order upwind flow scheme

  • Compressible, implicit solver

  • No slips wall, Symmetry and pressure Far-Field boundary conditions

  • Convergence acceleration using latest options in Fluent 2022 R1

  • Parallel solver

  • Post processing of results

  • Validations of results against experimental data.

  • solution convergence assessment based on lift and drag coefficients.


Resources:
You will get following resources in this course 

1. All power point slides

2. AGARD Report

3. All files including geometry, domain, hexa mesh, solved case and data files, excel file for data, aerofoil coordinates and also geometry from NASA.


Problem Setup

This problem will solve the flow past the wing with these conditions:


  • Freestream Temperature = 288.15 K

  • Freestream Mach number = 0.8395

  • Angle of attack (AOA) = 3.06 deg

  • Reynolds number = 11.72E6

  • Mean aerodynamics chord = 0.64607 m






Content

Introduction

Introduction

Hexa mesh generation in ICEMCFD

Geometry import and some preliminary settings
Discussion on Grid Topology for ONERA M6 Wing and creating master block
Splitting block into smaller blocks and adjusting it for wing
General adjustment of blocking for outer most edges and vertices
Preliminary mesh settings and further adjustments to blocking
O-Grid around wing for boundary layer
Refining mesh in O-Grid
Creating 2nd O-Grid in trailing edge region
Refining and improving mesh in whole domain
Solving low quality mesh issues to improve minimum quality and min angle
Preparing final mesh ready for simulation
Exporting mesh

Screenshots

CFD analysis of ONERA M6 wing - Part 2 Hexa Meshing - Screenshot_01CFD analysis of ONERA M6 wing - Part 2 Hexa Meshing - Screenshot_02CFD analysis of ONERA M6 wing - Part 2 Hexa Meshing - Screenshot_03CFD analysis of ONERA M6 wing - Part 2 Hexa Meshing - Screenshot_04

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4929040
udemy ID
10/14/2022
course created date
10/26/2022
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