This course will enable the students to -
Course Outcomes (COs):
Course |
Learning outcomes (at course level) |
Learning and teaching strategies |
Assessment Strategies |
|
---|---|---|---|---|
Course Code |
Course Title |
|||
MAT 422 |
Fluid Dynamics-II(Theory)
|
The students will be able to –
CO146: Analyse simple fluid velocity and temperature fields problems flow through pipe, over sphere etc. with Navier -Stoke's equation of motion. CO147: Apply the concept of variable viscosity in fluid flow between parallel plates CO148: Explain the theory of very slow motions flow past a sphere and Lubrication theory CO149: Derive the two-dimensional boundary layer equation for flow over a plane wall, Boundary layer on flat plate and Boundary layer flow past a wedge CO150: Understand the phenomenon of flow separation and boundary layer theory. CO151: Explain the two-dimensional thermal boundary layer equation for flow over a plane wall, Forced convection in laminar boundary layer on a flat plate, Free convection from a heated vertical plate. |
Approach in teaching: Interactive Lectures, Discussion, Power Point Presentations, Informative videos Learning activities for the students: Self learning assignments, Effective questions, presentations, Field trips |
Quiz, Poster Presentations, Power Point Presentations, Individual and group projects, Open Book Test, Semester End Examination |
Variable viscosity plane Couette flow, Variable viscosity plane Poiseuille flow, Flow due to plane wall suddenly set in the motion (Stokes’ first problem), Flow due to an oscillating plane wall (Stokes’ second problem), Starting flow in plane Couette motion
Starting flow in a pipe, Plane Couette flow of a viscous compressible fluid, Plane Couette flow with transpiration cooling steady incompressible flow with fluid suction/injection through porous wall on the boundaries.
Theory of very slow motion: Stokes’ and Oseen’s flows past a sphere, Lubrication theory.
Derivation of two-dimensional boundary layer equation for flow over a plane wall, Boundary layer on flat plate, Characteristic boundary layers parameters, Similar solutions of the boundary layer equations, Boundary layer flow past a wedge, Separation of boundary layers.
Derivation of two-dimensional thermal boundary layer equation for flow over a plane wall, Forced convection in laminar boundary layer on a flat plate, Free convection from a heated vertical plate.