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Compressible Flow Fundamentals: High-Speed Gas Dynamics

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Prof. Samer

5:59:23

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  • 1 - Introduction.mp4
    12:18
  • 2 - Speed of Sound.mp4
    23:05
  • 3 - Stagnation Properties.mp4
    17:32
  • 4 - Mach Number Relations.mp4
    18:51
  • 5 - Example 1.mp4
    25:30
  • 6 - Example 2.mp4
    10:36
  • 7 - Isentropic Flow with Area Changes.mp4
    21:37
  • 8 - Converging Diverging Duct.mp4
    17:44
  • 9 - Flow Area vs Mach Number Relation.mp4
    20:06
  • 10 - Choked Flow.mp4
    23:12
  • 11 - Example 3.mp4
    29:04
  • 12 - Example 4.mp4
    08:26
  • 13 - Operating a ConvergingDiverging Duct.mp4
    22:56
  • 14 - Mach Number Relations Across a Normal Shock Wave.mp4
    45:09
  • 15 - Example 5.mp4
    25:18
  • 16 - Example 6.mp4
    37:59
  • 17 - Downloadable Files.html
  • 17 - Exercise-Files.rar
  • Description


    Master Compressible Flow Fundamentals : High-Speed Gas Dynamics & Thermodynamics - Unlock Secrets of Compressible Flows

    What You'll Learn?


    • Appreciate the consequences of compressibility in gas flow
    • Analyze one-dimensional isentropic compressible flow
    • Derive property relations for isentropic flow of ideal gases
    • Analyze compressible flows across a converging-diverging duct
    • Understand why a nozzle must have a diverging section to accelerate a gas to supersonic speeds
    • Predict the occurrence of shocks and calculate property changes across a shock wave

    Who is this for?


  • Engineers and Scientists interested in Compressible Flow
  • More details


    Description

    Master Compressible Flow Fundamentals: High-Speed Gas Dynamics & Thermodynamics on Udemy - Unlock the Secrets of Compressible Flows

    Welcome to our comprehensive Udemy course on compressible flow, where we venture beyond the limitations of incompressible flow principles to thoroughly explore the world of compressible flows. These flows involve significant density changes and are frequently encountered in various high-speed gas devices and applications across a wide range of industries.

    Our course is designed to provide a unique and in-depth understanding of compressible flow by seamlessly integrating fluid dynamics and thermodynamics principles. This approach creates a robust and well-rounded theoretical foundation, preparing you to analyze and solve complex problems involving compressible flow in ideal gases with constant specific heats.

    We begin our journey by reviewing essential concepts, such as stagnation state, speed of sound, and Mach number. These foundational topics are crucial for gaining a solid grasp of the underlying principles of compressible flow dynamics.

    Next, we explore the relationships between static and stagnation fluid properties in isentropic flows of ideal gases. We express these relationships as functions of specific heat ratios and the Mach number, which are vital for understanding the behavior of compressible flows.

    Delving deeper, we examine the effects of area changes on one-dimensional isentropic subsonic and supersonic flows. This is demonstrated through an in-depth analysis of isentropic flow in converging and converging-diverging nozzles, showcasing the practical implications of these principles.

    Lastly, we introduce the intriguing concept of shock waves, discussing their formation and the variations in flow properties across normal shock waves. This knowledge is critical for addressing real-world challenges related to high-speed gas flows and their associated phenomena.

    Don't miss this opportunity to master compressible flow dynamics and elevate your understanding of high-speed gas flow and thermodynamics. Enroll now to unlock the secrets of compressible flows and enhance your skill set in this fascinating field!


    Who this course is for:

    • Engineers and Scientists interested in Compressible Flow

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    Samer is currently a Professor of Mechanical Engineering. He has ten years of teaching experience in thermo-fluid courses which include:1-Engineering Thermodynamics 2-Heat Transfer3-Internal Combustion Engines4-Fluid Mechanics5-HVAC6-Power Plant Engineering7-Solar Engineering8-Computational Fluid Dynamics CFDMoreover, Prof. Samer is involved in a wide research projects in Computational Fluid Dynamics (CFD), Fluid-Structure Interaction and numerical simulations applied to multi-functional heat exchangers/reactors. Prof. Samer has authored and co-authored several highly cited journal publications, conferences in the aforementioned topics.
    Students take courses primarily to improve job-related skills.Some courses generate credit toward technical certification. Udemy has made a special effort to attract corporate trainers seeking to create coursework for employees of their company.
    • language english
    • Training sessions 16
    • duration 5:59:23
    • Release Date 2023/04/26

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