RBF: All Levels

RBF: All Levels

5
2h 48m 48s
  1. Section 1

    Concept

  2. Section 2

    RBF Morph in ANSYS Fluent

  3. Section 3

    Minimizing Pressure Drop

  4. Section 4

    Minimizing Drag Force

  5. Section 5

    Maximizing Lift to Drag Ratio

MR CFD
Oops! You are not logged in.

For watching this episode you should sign in first, if you don't have an account, you can create one in seconds.

Toggle Episode List

RBF: All Levels — Ep 01

RBF Morph (Mesh Morphing) Introduction

Episode
01
Run Time
16m 28s
Published
Nov 18, 2024
Topic
RBF
Course Progress
0%
Mark as Complete
Add to Watchlist
About This Episode

Master RBF Morph: Revolutionize Your Design Optimization Skills

Embark on your journey to advanced design optimization with the first episode of our “RBF: All Levels” course. This foundational lesson, “RBF Morph (Mesh Morphing) Introduction,” sets the stage for mastering cutting-edge techniques in Computational Fluid Dynamics (CFD) using ANSYS Fluent.

Episode Overview: Unveiling the Power of Mesh Morphing

In this comprehensive introductory video, you’ll dive deep into the core concepts of RBF Morph and Mesh Morphing. This episode is carefully crafted to provide both novices and experienced engineers with a solid foundation in design optimization techniques, preparing you for the advanced applications to come.

Key Learning Objectives

  • Grasp the fundamental principles of design optimization in CFD
  • Understand the role of mesh morphing in enhancing simulation accuracy
  • Explore various optimization methods available in ANSYS Fluent
  • Learn the basics of the Radial Basis Function (RBF) approach

Episode Highlights: From Basics to Advanced Concepts

1. Design Optimization Fundamentals

- Comprehensive overview of design optimization principles - Comparison of different optimization methods in CFD software - Insights into when and why to use specific optimization techniques

2. Shape Optimization Process

- Detailed explanation of the three-step simulation process: 1. Conventional flow solution 2. Adjoint solution 3. Gradient-based optimization solution - Understanding how each step contributes to achieving optimal designs

3. Adjoint Solver Deep Dive

- Introduction to adjoint solver methodology - Exploration of inputs, governing equations, and observable definitions - How adjoint solvers revolutionize the optimization process

4. Mesh Morphing Techniques Unveiled

- Comprehensive overview of mesh morphing methods: 1. Direct interpolation 2. Polynomial approaches 3. Radial Basis Function (RBF) method - Pros and cons of each method and their ideal applications

Why This Episode Is Crucial

  • Lays the groundwork for advanced optimization techniques
  • Provides a clear roadmap for the entire course
  • Offers insights into industry-standard tools and methodologies
  • Prepares you for practical applications in subsequent episodes

Who Should Watch

This episode is perfect for:

  • CFD engineers looking to enhance their optimization skills
  • Mechanical and aerospace design engineers
  • Students and researchers in fluid dynamics and related fields
  • Anyone interested in cutting-edge design optimization techniques

Take Your First Step Towards CFD Mastery

Don’t miss this opportunity to start your journey into advanced design optimization. This introductory episode of “RBF: All Levels” will equip you with the knowledge and insights needed to tackle complex engineering challenges using state-of-the-art CFD techniques.

What You'll Gain

  • A solid understanding of RBF Morph and Mesh Morphing concepts
  • Insights into the latest trends in CFD optimization
  • Foundation for mastering ANSYS Fluent’s advanced features
  • Preparation for tackling real-world optimization problems

Enroll now and take the first step towards becoming a CFD optimization expert. Whether you’re aiming to optimize aerodynamics, enhance heat transfer, or improve fluid flow systems, this course will provide you with the tools and knowledge to excel in your field.

Join us in exploring the cutting-edge of CFD technology and transform your approach to design optimization!