Introduction# Continuum, Stress, Fluid, Viscosity. Control Volume And Integral Description# Mass Conservation, Momentum, Angular Momentum And Energy Equations. Bernoulli S Equation. Dimensional Analysis And Similarity Laws. Kinematics# Streamlines, Streaklines, and Pathlines. Stream-function and Material Derivative. Differential Description# Continuity and Momentum Equations. Hydrostatics. Newtonian Fluids, Naiver-stokes Equations and Boundary Conditions. Normalization Of Equations, Nondimensional Numbers and Order-of-magnitude Analysis. Exact Solutions. Surface Tension# Contact Angle, Young-laplace Equation and Capillary Rise. Stokes Equations. Euler Equations And Potential Flow. Boundary Layers# Differential and Integral Boundary Layer Equations, Approximate Solutions, Viscous Forces and Drag. Laminar and Turbulent Flow in Pipes# Reynolds Experiment, Turbulence, Moody Diagram, Losses and Engineering Bernoulli S Equation. Experimenting With Fluid Mechanics As Part of a Personal Or Group Project.

Faculty: Mechanical Engineering
|Undergraduate Studies

Pre-required courses

(34035 - Thermodynamics 1 and 104131 - Ordinary Differential Equations/h and 104228 - Partial Differential Equations/m)


Course with no extra credit (contained)

34013 - Fluid Mechanics 1


Semestrial Information