|
| Week | Topic | Text |
|---|---|---|
| 1/7 | Introduction, Basic Concepts | Ch 1 |
| 1/14 | Fluid Statics | Ch 2 |
| Pressure Variation, Manometry | ||
| Hydrostatic Forces, Buoyancy | ||
| 1/21 | Elementary Fluid Dynamics | Ch 3 |
| Newton's Second Law | ||
| Bernoulli Equation | ||
| 1/28 | Fluid Kinematics | Ch 4 |
| Flow field descriptions | ||
| Reynolds Transport Theorem | ||
| 2/4 | Control Volume (Integral) Analysis | Ch 5 |
| Conservation of Mass and Momentum | ||
| Applications | ||
| MIDTERM I | ||
| 2/11 | Differential Analysis | Ch 6 |
| Kinematics of a Fluid Element | ||
| Conservation of Mass and Momentum | ||
| 2/18 | Differential Analysis, cont. | " " |
| Viscous Flow - Navier-Stokes Equations, Simple Solutions | ||
| Inviscid Flow - Euler's Equation, Bernoulli Equation | ||
| 2/25 | Differential Analysis, cont. | " " |
| Inviscid Irrotational Flow - Potential Flow | ||
| 3/3 | Dimensional Analysis | Ch 7 |
| Modeling and Similitude | ||
| MIDTERM II | ||
| 3/10 | Dimensional Analysis, cont. | " " |
| 3/17 | FINAL EXAM (11:30a-2:29p) |