
Explore meshing fundamentals in Ansys meshing. Learn how to discretize geometry, use various element types and orders, and achieve quality meshes for accurate transport equation solutions.
Generate your first mesh in Ansys using a can combustor example; learn multi-body parts, named selections, inflation, and section planes to prepare CFD-ready meshes with a few steps.
Explore global mesh settings in Ansys, including adaptive sizing, resolution, capture curvature and proximity, and mesh featuring; learn how element order, transition, and span angle affect mesh quality.
Explore global mesh settings for adaptive sizing, focusing on curvature and proximity options to control element distribution around curves, holes, and close features in a welded beam geometry.
Explains how to generate a structured 2d mesh for a p-trap using local mesh settings, including method sizing, refinement, edge sizing, face sizing, inflation layers, and bias control.
Explore local mesh settings in Ansys meshing by comparing tetrahedrons patch independence and patch conforming, and refine a 3D dice mesh using element size and feature controls.
Compare sweep and multi-zone local meshing in Ansys on 3D pipe, defining source and target, adjusting divisions and curvature, and applying inflation to obtain a structured hex and wedge mesh.
Generate a structured, fine 2d mesh for the welded beam geometry, focusing on high-stress areas at the weld and bracket, using triangular dominant method, edge sizing, and biasing for quality.
Unlock the full potential of Ansys Meshing with this comprehensive course designed to take you from a beginner to an advanced meshing user. This course is meticulously crafted to cover every aspect of meshing, ensuring you gain the skills needed to create high-quality meshes for both Finite Element Analysis (FEA) and Computational Fluid Dynamics (CFD) simulations.
Course Overview
Starting with the basics, you’ll learn the fundamental concepts of meshing, including the different types of mesh elements and their applications. I’ll guide you through the initial setup and navigation of the Ansys Meshing interface, making sure you are comfortable with the tools at your disposal.
Advanced Techniques
As you progress, I’ll delve into more advanced techniques, exploring both global and local meshing parameters. You’ll understand how to control mesh density and quality on a global scale, as well as how to apply local refinements to capture intricate details of your geometry.
Hands-On Experience
Throughout the course, you’ll engage in practical workshops and real-world examples, giving you hands-on experience with complex models. These exercises are designed to reinforce your learning and provide you with the confidence to tackle any meshing challenge you encounter in your professional work.
Course Outcome
By the end of this course, you’ll have a deep understanding of Ansys Meshing and be equipped with the knowledge and skills to create efficient, high-quality meshes for any simulation scenario. Whether you’re an engineer, researcher, or student, this course will empower you to achieve excellence in your simulations.