Particle Methods in Abaqus: DEM vs. SPH

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Particle Methods in Abaqus: DEM vs. SPH 2017

About this Course Course objectives In this course you will: Learn about the SPH technique for modeling violent free-surface fluid flow (such as wave impact) and extremely high deformation/obliteration of solid structures (such as ballistics). Learn about the discrete element technique for modeling particulate media and performing analyses such as granular material mixing or segregation, transport, and deposition of particulate materials. Targeted audience Beginner and advanced Abaqus users Prerequisites None 4 hours

Half Day Class Lesson 1 Workshop 1 Workshop 2 Lesson 2 Lesson 3 Workshop 3 Discrete Element Method Mixing of Granular Media in a Drum Mixer Conveyor Transfer Chute - Particle Generator (Optional) Overview of SPH (Smoothed Particle Hydrodynamics) SPH Modeling Techniques Bird Strike on an Airplane Engine Blade

SIMULIA SIMULIA is the Dassault Systèmes brand for Realistic Simulation solutions Portfolio of established, best-in-class products Abaqus, Isight, Tosca, fe-safe All using a common extended licensing pool

SIMULIA s Power of the Portfolio Abaqus Routine and Advanced Simulation Linear and Nonlinear, Static and Dynamic Fluid, Thermal, Electrical, Acoustics Extended Physics through Co-simulation Model Preparation and Visualization Realistic Human Simulation High Speed Crash & Impact Noise & Vibration Isight Process Integration Design Optimization Parametric Optimization Six Sigma and Design of Experiments Material Calibration Workflow Automation Design Exploration Tosca Non-Parametric Optimization Structural and Fluid Flow Optimization Topology, Sizing, Shape, Bead Optimization Conceptual/Detailed Design Weight, Stiffness, Stress Pressure Loss Reduction fe-safe Durability Simulation Low Cycle and High Cycle Fatigue Weld, High Temperature, Non-metallics Safety Factors Creep-Fatigue Interaction Weld Fatigue

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Legal Notices The software described in this documentation is available only under license from Dassault Systèmes or its subsidiaries and may be used or reproduced only in accordance with the terms of such license. This documentation and the software described in this documentation are subject to change without prior notice. Dassault Systèmes and its subsidiaries shall not be responsible for the consequences of any errors or omissions that may appear in this documentation. No part of this documentation may be reproduced or distributed in any form without prior written permission of Dassault Systèmes or its subsidiaries. Dassault Systèmes, 2015 Printed in the United States of America. Abaqus, the 3DS logo, and SIMULIA are trademarks or registered trademarks of Dassault Systèmes or its subsidiaries in the US and/or other countries. Other company, product, and service names may be trademarks or service marks of their respective owners. For additional information concerning trademarks, copyrights, and licenses, see the Legal Notices in the Abaqus Installation and Licensing Guide.

Lesson 1: Discrete Element Method Lesson content: Discrete Element Method DEM Model Definition Workshop 1: Mixing of Granular Media in a Drum Mixer Workshop 2: Conveyor Transfer Chute - Particle Generator (optional) 1.5 hours

Lesson 2: Overview of SPH (Smoothed Particle Hydrodynamics) Lesson content: Introduction Examples Water-wave impact Priming a Pump Bottle Drop Garden Hose Taylor Test Projectile Impact on a Plate Hail Impact SPH Basics SPH Interpolation 0.5 hour

Lesson 3: SPH Modeling Techniques Lesson content: Overview Particle elements Model definition Optional controls Converting finite elements to SPH particles Limitations Workshop 3: Bird Strike on an Airplane Engine Blade 2 hours