SIMCENTER TRAINING COURSE CATALOG

Simcenter Pre/Post Fundamentals (TR15220)

3 Day Class
Intended for design engineers and analysts who are looking to gain knowledge performing finite element analysis (FEA), this course covers finite element modeling and results visulaization in Simcenter Pre/Post. Students will learn the FEA processes – including model preparation, mesh generation and
manipulation, material definition, boundary conditions, FEA model checking and solving, and post processing results.

Course Topics:
• Build and Analyze Finite Element Model with Pre/Post
• Generate a Mesh on the Model
• Apply Boundary Conditions
• Select Materials and Physical Properties for the Model
• Fields and Expressions
• Post-Process Modeling and Report Generating

Prerequisites:
• NX CAD Fundamentals (TR10200) OR
• NX for Experienced CAD Users (TR10300)
• Basic understanding of FEA principles
• Working knowledge of NX Modeling

Simcenter Thermal Simulation (TR15223)

2 Day Class
For design engineers and analysts who use Simcente to model heat transfer, this course introduces product simulation and analysis in Simcenter Pre/Post for heat transfer applications. Students will learn to efficiently carry out
thermal analysis while covering basic thermal topics – including conduction, convection, and radiation.

Course Topics:
• Overview of Simcenter Thermal
• Meshing and Material Properties
• Heat Transfer Introduction
• Thermal Initial Conditions and Boundary Conditions
• Post Processing Specific to Simcenter Thermal
• Thermal Mapping

Prerequisites:
• Pre/Post Fundamentals (TR15220)
• Basic understanding of FEA principles
• Working knowledge of NX Modeling

Simcenter Flow Simulation (TR15224)

2 Day Class
This course introduces design engineers and analysts to product simulation and analysis in Simcenter Pre/Post 3D fluid flow application. Students will gain knowledge in carrying out computational fluid dynamics (CFD) efficiently. Along with covering basic flow topics, this course will touch on a wide range of applications.

Course Topics:
• Overview of Simcenter Flow
• Fluid Volume Creation and Meshing
• Meshing and Material Properties
• Flow Initial Conditions and Boundary Conditions
• Flow Solution Options and Solving
• Post-Processing Specific to Simcenter Flow

Prerequisites:
• Pre/Post Fundamentals (TR15220)
• Working knowledge of NX Modeling
• Basic understanding of FEA and CFD principles

Simcenter Thermal and Flow Analysis (TR15225)

3 Day Class
Intended for engineers who model heat transfer and fluid flow, this course covers the use of Simcenter Thermal and Flow to model heat transfer and 3D fluid flow problems. Students will gain skills to effectively carry out advanced thermal and computational fluid dynamics (CFD) analysis. Also covered is both theoretical and practical aspects on how Simcenter
handles heat transfer, fluid flows, and coupled thermal-flow analysis.

Course Topics:
• Meshing and Thermal Analysis
• Meshing for Flow Analysis
• Thermal Boundary Conditions
• Thermal Couplings
• Radiation to Environment
• Flow Boundary Conditions
• Convection Modeling
• Solution Attributes and Solving
• Coupled Thermal-Flow Analysis
• Post Processing
• Mapping

Prerequisites:
• NX CAD Fundamentals (TR10200) OR
• NX for Experienced CAD Users (TR10300)
• Working knowledge of NX Modeling
• Basic understanding of FEA and CFD principles

Simcenter Advanced Thermal & Flow Analysis (TR15226)

2 Day Class
This course covers theoretical and practical aspects of how to handle heat transfer by conduction, convection, and radiation. Along with solving mold heat transfer, radiation, and 3D fluid flow problems, students will incorporate advanced radiation modeling – from solar and radiative heating, full coupled with thermal, and fluid flow analysis.

Course Topics:
• Solar Heating
• Radiative Heating
• Advanced Thermo-Optical Properties
• Duct Networks
• Supersonic Flow Boundary Condition
• Rotating Frames of Reference
• Rotational and Translational Periodicity
• Advanced Thermal Coupling Types
• Articulating Models
• Active Fan Controller
• Non-Newtonian Fluids
• Humidity and Scalar Fluid Mixtures
• Peltier Cooler (TECs)
• Joule Heating
• Ablation and Charring
• Material Libraries
• Phase Change
• Particle Tracking

Prerequisites:
• Thermal and Flow Analysis (TR15225)
• Working knowledge of NX modeling
• Basic understanding of FEA and heat transfer

Simcenter Space Systems Thermal (TR15227)

3 Day Class
Students will learn to build and modify geometry, create finite element mesh, define orbits and articulation, and carry out advanced thermal analysis of spacecraft. This course covers theoretical and practical aspects of handling heat transfer and radiation in aerospace applications.

Course Topics:
• Introduction to Simcenter
• Meshing and Material Properties for Thermal Analyses
• Creating Models with Primitives
• Heat Transfer and Space Concepts
• Thermal Initial and Boundary Conditions
• Thermal Couplings and Radiation
• Orbital and Solar Heating
• Solution Options and Solving
• Post Processing
• Results Mapping

Prerequisites:
• Pre/Post Fundamentals (TR15220)
• Working knowledge of NX modeling
• Basic understanding of FEA and heat transfer

Simcenter Electronics Systems Cooling (TR15228)

3 Day Class
This course covers building electronic systems cooling models, simulating heat transfer and 3D fluid flow in electronics applications. Students will learn how to efficiently build and modify geometry, create finite element
mesh, and carry out complex heat transfer by conduction, convection, and radiation.

Course Topics:
• Introduction to Simcenter Pre/Post
• Geometry Idealization and Fluid Volume Creation
• Meshing and Material Properties for Thermal
and Flow Analyses
• Heat Transfer and Electronics Thermal Management
• Computational Fluid Dynamics (CFD)
• Thermal and Flow Boundary Conditions
• Thermal Couplings and Radiation
• Solution Options and Solving
• Post Processing
• Results Mapping
• PCB Exchange Introduction

Prerequisites:
• Pre/Post Fundamentals (TR15220)
• Working knowledge of NX modeling
• Basic understanding of FEA and CFD principles

Simcenter Response Dynamics (TR15230)

3 Day Class
Intended for designers and engineers who are looking to characterize dynamic responses including transient, sinusoidal, random, and shock spectrum, this course covers the use of Response Simulation for analysis of mechanical
components subjected to dynamic loads. Students will gain comprehensive knowledge covering the general theory and methods behind the software and consideration important to accurate results such as model sufficiency.

Course Topics:
• Single and Multi-Degree of Freedom Systems
• Function Creation and Manipulation
• Random Vibration Analysis
• Transient Vibration Analysis
• Response Spectra Analysis
• Base Excitation Methods
• Shock and Drop Analysis

Prerequisites:
• Pre/Post Fundamentals (TR15220)
• Basic understanding of FEA principles, statics, solid mechanics, and basic dynamics

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