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Ansys Fluent Class#7

Ansys Space Claim(Fluent Modelling), Ansys Meshing(Local Control), Ansys Fluent(Heat Transfer)
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Chapter 1= Ansys Space Claim(Fluent Modelling)

Do simplification on the existing model to prepared it for Meshing section and also Create Volume Extraction and Enclosure, work on the assembly part and learn how to create share topology

Merge Faces       

Volume   Extraction       

Enclosure 

Chapter 2= Ansys Meshing( Local Mesh Control)

Student will learn how to use the local control meshing method such as Method for body(Automatic,Tetrahedrons,Hex Dominant, Sweep), for sizing (Edge,face) with different type(Element sizing,Sphere of Influence,body of Influence and Factor of Global Size), Inflation, Pinch,Face Meshing, and Node Move

Method       

Automatic       

Tetrohedrons       

Hex Dominant       

Sweep       

Multizone       

Sizing       

Face       

Edge       

Body       

Element Sizing       

Sphere of   Influence       

Face Meshing       

Inflation       

Node Move       

2D Meshing 

Chapter 3= Ansys Fluent( Heat Transfer)      

Heat Transfer type such as Convection, Conduction, Radiation, Modeling Heat Transfer in Walls such as Mesh the wall, Specified Wall Thickness and Specified Shell Conduction, Conjugate Heat Transfer, Post Processing Heat Transfer and Natural convection of the heated air and modelling thermal radiation. Doing more practice with Workshop model section. 

Heat   Transfer Types       

Convection Transfer     

Conduction   Heat Transfer       

Radiation Heat   Transfer       

Choosing a   Radiation Heat Transfer       

Mixed Option       

Modeling Heat   Transfer in Walls       

Option1: Mesh   the wall       

Option2: Specified Wall Thickness       

Option3: Specified Shell Conduction       

Conjugate Heat   Transfer       

Post   Processing Heat Transfer       

Demo: Heat   Transfer Through Pipe       

Workshop 02:   Heat Transfer   

–Conjugate   heat transfer (simultaneous conduction in a solid part coupled at walls to convection in the fluid)       

– Natural   convection of the heated air       

– Modelling thermal radiation     

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