Massachusetts Institute of Technology: Advanced Fluid Mechanics 3: Potential Flows & Boundary Layers
Learn to analyze the structure of high Reynolds number inviscid flows using potential flow theory, the roles of vorticity generation in viscous boundary layers, circulation and lift, flow separation, and transition to turbulence.
12 weeks
8–12 hours per week
Self-paced
Progress at your own speed
Free
Optional upgrade available
Advanced Fluid Mechanics 3: Potential Flows & Boundary Layers
At a glance
- Institution: MITx
- Subject: Engineering
- Level: Advanced
- Prerequisites:
Comfort with undergraduate-level fluid mechanics, multivariable calculus and undergraduate differential equations: elementary vector and tensor manipulation, Fourier transforms, solving second order linear ODEs and PDEs. Students without this background will find there is a steep learning curve and may have to put in more than the estimated time effort.
Note: it is highly recommended to have completed all of the material in Module 2 (2.25.2x) before commencing study of this module.
- Language: English
- Video Transcript: English
- Associated skills: Process Manufacturing, Chemical Process, Data-Flow Analysis, Physics, Fluid Mechanics, Fluid Dynamics, Hydraulics, Mechanical Engineering, Stokes Equation, Dimensional Analysis, Boundary Layer, Physically Based Animation
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