Advanced Fluid Mechanics 2: The Navier-Stokes Equations for Viscous Flows
Learn to apply the Navier-Stokes equations to viscous-dominated flows; including pipe flows, channel flows and free surface flows, use dynamical similarity and dimensional analysis, Stokes flows, similarity solutions and transient responses, lubrication analysis and surface tension.
There is one session available:
Advanced Fluid Mechanics 2: The Navier-Stokes Equations for Viscous Flows
Learn to apply the Navier-Stokes equations to viscous-dominated flows; including pipe flows, channel flows and free surface flows, use dynamical similarity and dimensional analysis, Stokes flows, similarity solutions and transient responses, lubrication analysis and surface tension.
There is one session available:
Advanced Fluid Mechanics 2: The Navier-Stokes Equations for Viscous Flows
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: this module (2.25.2x) is designed to be stand-alone. You do not need to take the first module (2.25.1x) to successfully complete this module.
- Language: English
- Video Transcript: English
- Associated skills: Fluid Dynamics, Fluid Mechanics, Hydraulics, Dimensional Analysis, Physics, Process Manufacturing, Mechanical Engineering, Physically Based Animation, Stokes Equation, Free Surface, Boundary Layer, Chemical Process