FLUID MECHANICS
ACCEN. NO. |
CAT. NO. |
NAME OF FILM |
DURATION |
1. |
FM 1 |
Rheological Behaviour of Fluids | 23 min. |
2. |
FM 2 |
Boundary Layer Control | 27 min. |
3. |
FM 3 |
Flow Visualization in Combustion Systems | 10 min. |
4. |
FM 4 |
Flow Around a Sphere | 13 min. |
5. |
FM 5 |
Suction Airfoil Tests in Aerodynamics | 13 min. |
6. |
FM 6 |
On Flow in Two Dimensional Centrifugal Impellor | 14 min. |
7. |
FM 7 |
Visual Study of the Flow Model in the Later Stages of Laminar-Turbulent Transition on a Flat Plate. | 8 min. |
8. |
FM 8 |
On observation of Flow Near Stagation Points of Blunt-Bodies at Low Reynolds Number | 6 min. |
9. |
FM 9 |
On Flow Pattern Observed with Doubly Refracting Solution of Milling Yellow. | 8 min. |
10. |
FM 10 |
Flow in Open Channels | 18 min. |
11. |
FM 11 |
Flow Visualization Water Channel | 18 min. |
12. |
FM 12 |
Transition in Circular Couttee Flow | 18 min. |
13. |
FM 13 |
Vortex Motion and Fluid Turbulence | 19 min. |
14. |
FM 14 |
Flow in culverts | 18 min. |
15. |
FM 15 |
Hydraulic model tests for Coroniriver Diversion Curi-Hydroelectric Dam | 18 min. |
16. |
FM 16 |
Hydraulic Test of River Beds | 30 min. |
17. |
FM 17 |
Vorticity Part I | 24 min. |
18. |
FM 18 |
Vorticity Part II | 23 min. |
19. |
FM 19 |
Fluid Dynamics Pt. I | 22 min. |
20. |
FM 20 |
Fluid Dynamics Pt. II | 33 min. |
21. |
FM 21 |
Fluid Dynamics Pt. III | 39 min. |
22. |
FM 22 |
Fluid Mechanics Boundary Layer | 36 min. |
23. |
FM 23 |
How to reduce drag | 30 min. |
24. |
FM 24 |
Secondary Flow Pt. I | 30 min. |
25. |
FM 25 |
Waves in Fluids Pt. I | 35 min. |
26. |
FM 26 |
Pressure Fields & Fluid Accelerator | 34 min. |
27. |
FM 27 |
Surface Tension in Fluid Mechanics | 29 min. |
28. |
FM 28 |
Angat Project Hydraulic Model | 37 min. |
29. |
FM 29 |
Deformation of Continuous Media | 38 min. |
30. |
FM 30 |
Form Drag, Lift and Propulsion | 24 min. |
31. |
FM 31 |
Turbulent Flow | 34 min. |
32. |
FM 32 |
Cavitation | 34 min. |
33. |
FM 33 |
Channel Flow of a Compressible Fluid | 31 min. |
34. |
FM 34 |
Magnetohydrodynamics | 28 min. |