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Introduction to Fluid Dynamics Simulation

  • Presential
  • Computational Fluid Dynamics

This course provides participants with the basics of Computational Fluid Dynamics (CFD) giving them the necessary foundation to properly use the ANSYS FLUENT software.

The course intends that future CFD software users will be able to understand the fundamental concepts underlying the numerical methods and approaches used, allowing them to understand the complete generation and solution cycle of a CFD simulation.

The course is structured in three modules: Preparation of geometries with ANSYS SpaceClaim, Generation of Meshes with ANSYS Meshing and Applications with ANSYS FLUENT.

Methodology:

Intensive training with ESSS specialists.

Program:

Module 1 - Preparation of Geometries with ANSYS SpaceClaim (08h / 1 day)
  • Introduction to SpaceClaim
  • Simplification of geometry: Cleaning of geometry, Simplification of surfaces, Modification of faces and Partitioning of models
  • Repair of imported models: Reconstruction of geometry, Parametrization, Medium surface, Interference detection, Automatic model repair
  • Modeling for CFD Simulation: Boolean Operations, Internal Volume Extraction, and Encapsulation Creation
Module 2 - Generation of Meshes with ANSYS Meshing (08h / 1 day)
  • Introduction to ANSYS Meshing;
  • Methods for creating mesh - Automatic mesh, Tetrahedron mesh, Hexahedral mesh, Mounting mesh, 2D mesh, Multiple body mesh;
  • Global Knit Generation Controls - Standard Mesh, Size Definition, Inflation, Mesh Generation Assemblies, Defeaturing, Statistics;
  • Local Knit Generation Controls - Size Sets, Mapped Face Meshing, Match Controls, Pinch, Inflation, Mesh Quality.
Module 3 - CFD Theory and Numerical Modeling with ANSYS FLUENT (16h / 2 days)
Introductory CFD (04h / 0.5 day)

  • Basic Concepts for CFD - What is CFD ?, Basic CFD Equations - Transport Phenomena, CFD History
  • Philosophy of CFD Software;
  • Geometry for CFD - What is CFD Geometry, Proper Simplifications, Symmetry and Periodicity;
  • CFD Meshes - Types of Meshes, What is the ideal mesh for each case ?, Quality Control of Meshes, Convergence of Knit, Knit of Time Concept of Element, Knot and Volume;
  • Modeling for CFD - Transport Equations, Relevant Dimensional Numbers, Source-Terms: Gravity,
  • Turbulence Modeling, Contour Conditions and Initial Conditions;
  • Solving Equations - Discretization of EDPs, Interpolation and Advocacy Schemes, Basic Concept on Solution Methods of the Equation System, Stationary and Transient Simulations, Convergence.
Numerical modeling with ANSYS FLUENT (12h / 1,5 days)
  • Imports of knitwear;
  • Application of boundary conditions;
  • Configuration of the physical model;
  • Turbulence Modeling;
  • Heat Transfer Modeling;
  • Transient Flow Modeling;
  • Convergence processing and evaluation;
  • Preview results.

Instructors/Teaching Staff:

  • Martin Poulsen Kessler, Dr.

  • Martín Cruz Alvarado

  • José Carlos Gonçalves Peres

  • Wenna Raissa dos Santos Cruz

  • João Victor Barbosa Alves

Prerequisites:

No prerequisites are required in this training

Certificate:

The student will have access to the certificate of participation issued by the ESSS Institute, with international recognition and validity.

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R$3450.00

payment methods:

  • Credit Card
  • Deposit

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Imagem Decorativa 1
Computational Fluid Dynamics

Introduction to Fluid Dynamics Simulation

This course provides participants with the basics of Computational Fluid Dynamics (CFD) giving them the necessary foundation to properly use the ANSYS FLUENT software.

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Imagem Decorativa 1
Computational Fluid Dynamics

Basic Course of Fluid Dynamics Simulation using ANSYS
| Portuguese |

The goals is to present the fundamentals of modeling and obtaining the results for fluid dynamics analysis with the use of ANSYS solutions.