ANSYS Fluent: All Levels

ANSYS Fluent: All Levels

14
3h 17m 6s
  1. Section 1

    Thermal Analysis

  2. Section 2

    Compressible Flow

  3. Section 3

    Supersonic Flow

  4. Section 4

    Single Reference Frame (SRF)

  5. Section 5

    Conjugated Heat Transfer (CHT)

  6. Section 6

    Solar Radiation

  7. Section 7

    Phase Change Material (PCM)

  8. Section 8

    Porous Zone

  9. Section 9

    Injection (DPM)

  10. Section 10

    Acoustic

  11. Section 11

    Dynamic Mesh

  12. Section 12

    Species Transport

  13. Section 13

    Combustion

  14. Section 14

    Multi-Phase Flow

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ANSYS Fluent: All Levels — Ep 01

Conjugated Heat Transfer (CHT) in Plate Heat Exchanger CFD Simulation

Episode
01
Run Time
13m 53s
Published
Nov 19, 2024
Course Progress
0%
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About This Episode

Master Conjugated Heat Transfer in Plate Heat Exchangers with ANSYS Fluent CFD Simulation

Delve into the intricate world of thermal fluid dynamics with our advanced tutorial on “Conjugated Heat Transfer (CHT) in Plate Heat Exchanger CFD Simulation”. This comprehensive episode in our “ANSYS Fluent: All Levels” course offers an in-depth exploration of heat transfer mechanisms in plate heat exchangers, a crucial skill for thermal engineers and CFD specialists across industries.

Unlock Advanced CFD Techniques for Efficient Heat Exchanger Design

Learn to harness the power of ANSYS Fluent to simulate and analyze complex heat transfer behaviors in plate heat exchangers. This tutorial provides a detailed approach to modeling conjugated heat transfer, combining convection and conduction phenomena for accurate thermal analysis.

Key Learning Objectives:

- Master the setup of 3D plate heat exchanger models in ANSYS Design Modeler - Develop proficiency in unstructured mesh generation for complex geometries - Understand the application of Conjugated Heat Transfer (CHT) in ANSYS Fluent - Analyze steady-state flow and thermal behaviors in plate heat exchangers

Comprehensive Simulation Setup and Methodology

Gain hands-on experience in configuring and executing a professional-grade CFD simulation for plate heat exchangers, covering all aspects from geometry creation to advanced thermal analysis.

1. Precise 3D Geometry and Mesh Generation

- Create optimized 3D models of plate heat exchangers using ANSYS Design Modeler - Implement unstructured meshing strategies with ANSYS Meshing - Optimize mesh quality for accurate flow and thermal simulations (2,216,379 elements)

2. ANSYS Fluent Configuration for Conjugated Heat Transfer

- Set up pressure-based solver for incompressible flow scenarios - Configure steady-state analysis with CHT modeling - Implement appropriate boundary conditions for fluid inlets and solid domains

3. Advanced Data Analysis and Visualization Techniques

- Extract and interpret temperature, pressure, and velocity contours - Analyze heat transfer patterns across fluid and solid domains - Evaluate the impact of fluid velocity on convective heat transfer efficiency

Real-World Applications and Industry Relevance

This tutorial is crucial for professionals and researchers in:

  • HVAC system design and optimization
  • Process engineering in chemical and food industries
  • Power generation and energy systems
  • Thermal management in electronics and automotive sectors

Key Simulation Outcomes and Thermal Insights

1. Fluid Flow Analysis

- Interpret velocity vectors to understand fluid movement within pipes - Identify the impact of flow patterns on heat transfer efficiency

2. Temperature Distribution Evaluation

- Analyze temperature gradients across fluid and solid domains - Assess the effectiveness of plate design on overall heat transfer

3. Conjugated Heat Transfer Assessment

- Evaluate the interplay between convection in fluids and conduction in solids - Understand the influence of material properties on heat transfer performance

Elevate Your CFD Skills in Advanced Heat Transfer Simulation

By completing this specialized tutorial, you’ll gain:

  • Cutting-edge skills in applying CFD to complex heat exchanger analysis
  • Proficiency in setting up and analyzing Conjugated Heat Transfer simulations in ANSYS Fluent
  • Deep understanding of the interplay between fluid dynamics and heat transfer
  • Insights into optimizing plate heat exchanger designs for maximum efficiency

Who Should Take This Advanced Tutorial

  • Thermal engineers specializing in heat exchanger design
  • CFD analysts working on complex heat transfer problems
  • Process engineers in chemical and energy industries
  • Graduate students in mechanical, chemical, or thermal engineering

Don’t miss this opportunity to significantly advance your CFD simulation skills in advanced heat transfer analysis. Enroll now in our “ANSYS Fluent: All Levels” course and master the art of simulating Conjugated Heat Transfer in plate heat exchangers with ANSYS Fluent!

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