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Download Advanced Fluid Mechanics Course for Free

Download the complete Advanced Fluid Mechanics video course for free with high-definition MP4 video lectures, project exercise archives, and step-by-step masterclasses. Learn offline at your own pace with zero paywalls or recurring subscriptions.

85Lectures
39.2Total Hours
5169.5MB Total Size
MP4 / 1080p HD
Instructor: Udemy
English
Beginner to advanced
Tags:#Course Advanced Fluid Mechanics#Download Advanced Fluid Mechanics#Download course Advanced Fluid Mechanics#Free Advanced Fluid Mechanics#Free download Advanced Fluid Mechanics#Prof. Samer#free-download#video-course
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All Video Lectures Available to Download85 Videos

Direct high-speed MP4 downloads for every chapter.

The Acceleration Field of a Fluid

MP4 HD26m57.14 MB
Stream

Example 6

MP4 HD10m22.56 MB
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The Stream Function

MP4 HD21m45.38 MB
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Example 7

MP4 HD25m54.63 MB
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The Stream Function in Cylindrical Coordinates

MP4 HD21m45.35 MB
Stream

Vorticity and Irrotationality

MP4 HD29m64.73 MB
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Frictionless Irrotational Flow

MP4 HD37m81.64 MB
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Velocity Potential

MP4 HD18m38.98 MB
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Example 8

MP4 HD44m97.34 MB
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Example 9

MP4 HD8m18.34 MB
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Example 10

MP4 HD11m24.76 MB
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Example 1

MP4 HD6m12.56 MB
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Potential Flow Uniform Flow

MP4 HD15m32.56 MB
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Potential Flow Source and Sink

MP4 HD15m33.45 MB
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Potential Flow Vortex

MP4 HD59m129.04 MB
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Potential Flow Doublet

MP4 HD1h 1m133.39 MB
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Example 11

MP4 HD7m16.35 MB
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Example 12

MP4 HD6m12.83 MB
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Example 13

MP4 HD29m64.75 MB
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Superposition of Potential Flows Source in a Uniform Stream—Half-Body

MP4 HD44m97.44 MB
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Example 14

MP4 HD25m55.11 MB
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Superposition of Potential Flows Rankine Ovals

MP4 HD52m115.42 MB
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Example 2

MP4 HD6m14.14 MB
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Superposition of Potential Flows Flow Around a Cylinder

MP4 HD1h 10m155.08 MB
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Superposition of Potential Flows Flow Around a Rotating Cylinder

MP4 HD1h 1m133.91 MB
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Example 15

MP4 HD11m23.97 MB
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Example 16

MP4 HD16m34.17 MB
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Example 17

MP4 HD16m36.17 MB
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The Differential Equation of Mass Conservation

MP4 HD21m45.21 MB
Stream

Example 3

MP4 HD2m4.57 MB
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Example 4

MP4 HD3m5.73 MB
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Linear and Shear Strain Rates

MP4 HD43m94.32 MB
Stream

Navier-Stokes Equation

MP4 HD47m103.18 MB
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Example 5

MP4 HD41m91.06 MB
Stream

Couette Flow between a Fixed and a Moving Plate

MP4 HD12m26.41 MB
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Flow Due to Pressure Gradient between Two Fixed Plates

MP4 HD12m27.04 MB
Stream

Example 1

MP4 HD28m62.44 MB
Stream

Fully Developed Laminar Pipe Flow

MP4 HD1h 2m136.70 MB
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Example 2

MP4 HD7m14.61 MB
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Flow between Long Concentric Cylinders

MP4 HD25m54.40 MB
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Introduction

MP4 HD29m63.52 MB
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The Pi Theorem

MP4 HD29m63.07 MB
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Example 1

MP4 HD15m34.09 MB
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Example 2

MP4 HD39m84.76 MB
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Example 3

MP4 HD27m58.94 MB
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Reynolds Number Regimes

MP4 HD26m57.89 MB
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Minor Losses

MP4 HD1h 17m168.66 MB
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Example 5

MP4 HD51m111.83 MB
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Example 6

MP4 HD25m54.74 MB
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Piping Systems with Pumps and Turbines

MP4 HD23m50.15 MB
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Series and Parallel Pipes

MP4 HD7m15.80 MB
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Three-Reservoir Junction

MP4 HD10m21.99 MB
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Example 7

MP4 HD1h131.85 MB
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Example 8

MP4 HD42m93.20 MB
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Example 9

MP4 HD42m91.71 MB
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Pipe Flowrate Measurement

MP4 HD23m51.56 MB
Stream

The Entrance Region

MP4 HD16m34.15 MB
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Example 10

MP4 HD23m50.28 MB
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Laminar Flow in Pipes

MP4 HD11m23.91 MB
Stream

Example 1

MP4 HD10m22.52 MB
Stream

Turbulent Velocity Profile

MP4 HD22m48.23 MB
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The Moody Chart

MP4 HD43m94.76 MB
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Example 2

MP4 HD18m39.83 MB
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Example 3

MP4 HD19m41.13 MB
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Example 4

MP4 HD10m22.08 MB
Stream

Boundary Layer on a Flat Plate

MP4 HD13m27.79 MB
Stream

Example 1

MP4 HD27m58.92 MB
Stream

Example 2

MP4 HD24m53.42 MB
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Example 3

MP4 HD24m52.78 MB
Stream

Boundary Layers with Pressure Gradients

MP4 HD57m124.68 MB
Stream

Drag Coefficient Data for Various Objects

MP4 HD50m108.97 MB
Stream

Flow over an Airfoil Generation of Lift

MP4 HD1h 16m166.24 MB
Stream

Example 4

MP4 HD18m39.79 MB
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Example 5

MP4 HD7m15.41 MB
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Example 6

MP4 HD20m44.63 MB
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Example 7

MP4 HD19m41.25 MB
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Momentum Integral Estimates Boundary Layer Thickness

MP4 HD41m90.57 MB
Stream

Example 8

MP4 HD17m37.67 MB
Stream

Momentum Integral Estimates Drag Force and Drag Coefficient

MP4 HD18m39.24 MB
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Momentum Integral Estimates Displacement Thickness

MP4 HD19m41.27 MB
Stream

The Boundary Layer Equations

MP4 HD41m89.12 MB
Stream

Blasius Solution PDE to ODE

MP4 HD43m93.54 MB
Stream

Blasius Solution The Numerical Shooting Method

MP4 HD26m57.19 MB
Stream

Blasius Solution Displacement Thickness, Drag and Drag Coefficient

MP4 HD13m28.66 MB
Stream

Turbulent Boundary Layer Flow

MP4 HD50m110.84 MB
Stream
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What You'll Master in this Free Download Course

Understand how the differential equation of conservation of mass and the differential equation of linear momentum are derived and applied.
Calculate the stream function and pressure field and draw streamlines for a known velocity field.
For simple flow fields, obtain analytical solutions to the equations of motion.
Understand dimensional analysis and similarity, the principle of dimensional homogeneity, Pi’s theorem, and the dimensionless transformation of basic equations.
Understand the concepts of inviscid flow, low Reynolds number, high Reynolds number, laminar and turbulent flow.
Identify and discuss the characteristics of external flow.
Calculate the boundary layer parameters for flow past a flat plate.
Calculate the drag and lift forces for various objects.

About this Free Download Course

Advanced Fluid Mechanics Course. The Advanced Fluid Mechanics course is a continuation of the Fundamentals of Fluid Mechanics course. This comprehensive program covers fundamental topics and concepts and provides deeper insight and advanced applications in fluid dynamics.This course is designed for students who wish to gain a deeper and more practical knowledge of fluid mechanics. By taking this course, you will be able to analyze and solve complex fluid dynamics problems and be more successful in research and industrial projects. What you will learn in the Advanced Fluid Mechanics course: Understand how the differential equation of conservation of mass and the differential equation of linear momentum are derived and applied. Calculate the stream function and pressure field and draw streamlines for a known velocity field. For simple flow fields, obtain analytical solutions to the equations of motion. Understand dimensional analysis and similarity, the principle of dimensional homogeneity, Pi’s theorem, and the dimensionless transformation of basic equations. Understand the concepts of inviscid flow, low Reynolds number, high Reynolds number, laminar and turbulent flow. Identify and discuss the characteristics of external flow. Calculate the boundary layer parameters for flow past a flat plate. Calculate the drag and lift forces for various objects.

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Yes! If this course includes downloadable source code, exercise assets, or templates, they are available in the "Course Exercise Files & Project Archives" section as standard ZIP files for free download.

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Free Download Summary

Price:100% Free
Total Lectures:85 videos
Total Duration:39.2 hours
Video Format:MP4 (1080p HD)
Registration:None (Instant Access)
Offline Playback:Supported
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