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SOLIDWORKS FLOW Simulation – 2 days

Lesson 1 : Creating a SOLIDWORKS Flow Simulation Project

  • Objectives
  • Case Study: Manifold Assembly
  • Problem Description
  • Stages in the Process
  • Model Preparation
  • Internal Flow Analysis
  • External Flow Analysis
  • Manifold Analysis
  • Lids
  • Lid Thickness
  • Manual Lid Creation
  • Adding a Lid to a Part File
  • Adding a Lid to an Assembly File
  • Checking the Geometry
  • Internal Fluid Volume
  • Invalid Contacts
  • Project Wizard
  • Reference Axis
  • Exclude Cavities Without Flow Conditions
  • Adiabatic Wall
  • Roughness
  • Computational Domain
  • Post-processing
  • Warning Messages
  • Mesh
  • Goal Plot Window
  • Monitoring the Solver
  • Load Results Option
  • Summary
  • Discussion
  • Scaling the Limits of the Legend
  • Changing Legend Settings

Lesson 2: Meshing

  • Objectives
  • Case Study: Chemistry Hood
  • Project Description
  • Computational Mesh
  • Basic Mesh
  • Exercise 3: Heat Sink
  • Initial Mesh
  • Exercise 2: Thin Walled Box
  • Exercise 1: Square Ducting
  • Summary
  • Control Planes
  • Manual Global Mesh Settings
  • Result Resolution/Level of Initial Mesh
  • Minimum wall thickness.
  • Minimum gap Size
  • Geometry Resolution
  • Exercise 4: Meshing Valve Assembly Boundary Conditions

Lesson 3: Thermal Analysis

  • Objectives
  • Case Study: Electronics Enclosure
  • Project Description
  • Fans
  • Summary
  • Discussion
  • Free Area Ratio
  • Perforated Plates
  • Fan Curves
  • Exercise 5: Materials with Orthotropic Thermal Conductivity

Lesson 4: External Transient Analysis

  • Objectives
  • Case Study: Flow Around a Cylinder
  • Problem Description
  • Stages in the Process
  • Reynolds Number
  • External Flow
  • Transient Analysis
  • Turbulence Intensity
  • Solution Adaptive Mesh Refinement
  • Two Dimensional Flow
  • Computational Domain
  • Calculation Control Options
  • Finishing
  • Refinement
  • Solving
  • Saving
  • Drag Equation
  • Unsteady Vortex Shedding
  • Exercise 6: Electronics Cooling
  • Discussion
  • Time Animation
  • Summary

Lesson 5: Conjugate Heat Transfer

  • Objectives
  • Case Study: Heated Cold Plate
  • Project Description
  • Stages in the Process
  • Summary
  • Goals Plot in the Solver Window
  • Real Gases
  • Conjugate Heat Transfer
  • Exercise 7: Heat Exchanger with Multiple Fluids

Lesson 6: EFD Zooming

  • Objectives
  • Case Study: Electronics Enclosure
  • Project Description
  • EFD Zooming
  • EFD Zooming - Computational Domain
  • Summary

Lesson 7: Porous Media

  • Objectives
  • Case Study: Catalytic Converter
  • Problem Description
  • Stages in the Process
  • Porous Media
  • Porosity
  • Exercise 8: Channel Flow
  • Discussion
  • Design Modification
  • Dummy Bodies
  • Resistance
  • Permeability Type
  • Summary

Lesson 8: Rotating Reference Frames

  • Objectives
  • Rotating Reference Frame
  • Part 1: Averaging
  • Case Study: Table Fan
  • Problem Description
  • Stages in the Process
  • Part 2: Sliding Mesh
  • Case Study: Blower Fan
  • Summary
  • Time Step
  • Tangential Faces of Rotors
  • Problem Description

Lesson 9: Parametric Study

  • Objectives
  • Case Study: Piston Valve
  • Problem Description
  • Stages in the Process
  • Parametric Analysis
  • Target Value Dependence Types
  • Input Variable Types
  • Part 1: Goal Optimization
  • Parametric study
  • Steady State Analysis
  • Output Variable Initial Values
  • Exercise 9: Variable Geometry Dependent Solution
  • Boundary Conditions
  • Summary
  • Part 2: Design Scenario
  • Running Optimization Study

Lesson 10: Cavitation

  • Objectives
  • Case Study: Cone Valve
  • Problem Description
  • Cavitation
  • Discussion
  • Summary

Lesson 11: Relative Humidity

  • Objectives
  • Relative Humidity
  • Case Study: Cook House
  • Problem Description
  • Summary

Lesson 12: Particle Trajectory

  • Objectives
  • Case Study: Hurricane Generator
  • Problem Description
  • Particle Trajectories - Overview
  • Particle Study - Physical Settings
  • Particle Study - Wall Condition
  • Summary
  • Exercise 10: Uniform Flow Stream

Lesson 13: Supersonic Flow

  • Objectives
  • Supersonic Flow
  • Case Study: Conical Body
  • Problem Description
  • Drag Coefficient
  • Shock Waves
  • Discussion
  • Summary

Lesson 14: FEA Load Transfer

  • Objectives
  • Case Study: Billboard
  • Problem Description
  • Summary
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