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Fluid-Structure Interaction (FSI) Simulation Course

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  • Module 1 - Introduction to Fluid-Structure Interaction (FSI)
    • Student Handbook
    • Slides - Module 01
    • 1.1 Introduction
    • 1.2 System Coupling
    • Quiz - Module 01
  • Modulo 2 - Co-Simulation: Overview
    • Slides - Module 02
    • Material - Module 02
    • 2.1 Preprocessing: Geometry and Mesh
    • 2.2 Mechanical Settings
    • 2.3 Fluent Configuration
    • 2.4 Workshop 01: 2-Way Thermal FSI for an Exhaust Manifold
    • Quiz - Module 02
  • Module 3 - Setting Up a Co-Simulation
    • Slides - Module 03
    • Material - Module 03
    • 3.1 FSI Co-simulation Results
    • 3.2 Workshop 02: 2-Way FSI for a Hyperelastic Flap with Dynamic Readjustment
    • Quiz - Module 03
  • Module 4 - Co-Simulation Convergence
    • Slides - Module 04
    • Material - Module 03
    • 4.1 Static Data Transfers (1-way)
    • 4.2 Unidirectional Thermal Stress Analysis of a T-Joint
    • 4.3 Static Transfer vs. Co-simulation (1-way)
    • 4.4 Workshop 04: 1-Channel Structural FSI of a Probe in a Fluid
    • Quiz - Module 04
  • Module 5 - Mesh Movement and Deformation for Coupled Systems
    • Slides - Module 05
    • Material - Module 05
    • 5.1 Mesh Movement and Deformation for System Coupling
    • 5.2 Workshop 05 - Spring Smoothing
    • 5.3 Workshop 06: Use of UDFs in the Motion of Deformable Meshes I
    • 5.4 Workshop 07: Use of UDFs in the Motion of Deformable Meshes II
    • 5.5 Workshop 08: Layering in 2D Meshes
    • 5.6 Workshop 09: Debug I
    • 5.7 Workshop 09: Debug II
    • 5.8 Workshop 09: Debug III
    • 5.9 Workshop 09: Debug IV
    • Quiz - Module 05
  • Module 6 - Post-Processing a Co-Simulation
    • Slides - Module 06
    • Material - Module 06
    • 6.1 Initialization and Prestressing
    • 6.2 Convergence and Problem Solving
    • 6.3 Workshop 09: 2-Way Structural-Thermal FSI in a Escape Route
    • Quiz - Module 06
  • Module 7 - System Coupling Workflows
    • Slides - Module 07
    • Material - Module 07
    • 7.1 Advanced Workflows
    • 7.2 Workshop 10: 2-Way Wing Deflection FSI I
    • 7.3 Workshop 10: 2-Way Wing Deflection FSI II
    • Quiz - Module 07
  • Final Consideration
    • We want to know your opinion!

Description

Fluid-structure interaction (FSI) is the coupling between the laws of different branches of physics, particularly those of fluid dynamics and structural mechanics. This coupling takes into account the pressure or thermal field from a CFD (Computational Fluid Dynamics) analysis and the direct consequences of this loading on the structural analysis.

There are countless components that can be studied from an FSI perspective. Industrial valves, pipes that transport high-temperature fluids, rotors in rotating machinery, wind turbines, blood valves, external cabinet housings, parabolic antennas, etc. Basically, most products involve multiple physical phenomena, and today this type of study is even more feasible and widely used.


Access period: 180 days with the single course purchase | 365 days with the Full Pass annual subscription and access to the entire course catalog

Category: Computational Fluid Dynamics

General info

Content
  • Introduction to Fluid-Structure Interaction (FSI)
  • Co-Simulation: Overview
  • Setting Up a Co-Simulation
  • Co-Simulation Convergence
  • Mesh Movement and Deformation for Coupled Systems
  • Post-Processing a Co-Simulation
  • System Coupling Workflows
  • Data Transfer
Objective

To present the phenomena associated with fluid-structure interaction, as well as the main characteristics of its computational modeling and the proper use of these features in Ansys commercial software.


Target audience

Industry professionals, students, and academic professors interested in improving their knowledge in simulation techniques.


Methodology

Students have the flexibility to complete the training at the most convenient time in their daily routine. The videos, texts, and exercises have been prepared, reviewed, and structured in advance, allowing for optimal asynchronous use. Access to the educational platform is individual and non-transferable. Sharing access and downloading video materials is prohibited. If a student violates ESSS’s copyright rules, they may face the penalties provided by law.


Access period: 180 days with the single course purchase | 365 days with the Full Pass annual subscription and access to the entire course catalog

Certificate

Upon full completion of the course, students receive an international certificate in electronic format, confirming completion of the course and the total number of hours completed. The certificate is issued by the ESSS Institute, a global leader in the field of computer simulation. ESSS ensures the quality of the course through its experience and recognition as a leader in computer simulation. With more than 300 employees, it is undoubtedly the largest CAE company in Latin America, with a portfolio of more than 800 companies worldwide. The faculty consists of ESSS faculty members holding doctoral and master’s degrees, as well as guest lecturers, all with solid backgrounds in teaching, research, and consulting.


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