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Other Professional CoursesUdemy2020-9 Edition100% Free Video Course

Advanced Fluid Mechanics

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.

85 Video Lessons
39.2 Hours On-Demand
Created by Udemy
Uploaded Sep 2026
English
Beginner to advanced
Advanced Fluid Mechanics
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Course Features:
39.2 hours on-demand video
85 complete lectures
Streamable on mobile, tablet & desktop
Self-paced curriculum with progress tracking
Direct MP4 downloads & offline video access
Verified course archives hosted on cloud infrastructure.

What You'll Master in this 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.

Course Curriculum85 Lectures

5 sections • 39.2 hours total length

Prefer offline learning? Download all 85 video lectures and project files for free.
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Requirements

  • Basic enthusiasm to learn and follow along with lessons
  • A computer or mobile device with a modern internet connection

Description

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.

Instructor

U

Udemy

Specialist in Other Professional Courses

Passionate educator focused on real-world practical skills, modern frameworks, and production-ready engineering practices. Delivering step-by-step masterclasses accessible to learners globally on MJ Accedemy.

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