Date | Teacher | Place | Topic | Lecture notes / comments |
21.08.2006 | Arnold F. Bertelsen | Rom B 935 | Oppsummering av balanselover og konstitutive i fluidmekanikk i tilknytning til avsnitt 3-1 i pensumboka. Eksempler på eksakte løsninger av strømningsproblemer (se avsnitt 3-2 i pensumboka) | |
23.08.2006 | Arnold F. Bertelsen (AFB) | Rom B 935 | Eksempler på eksakte løsninger av strømningsproblemer gjennomgåes (se avsnitt 3-2 og 3-3 i pensumboka) | |
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29.08.2006 | AFB | Rom B 935 | Poiseuille Flow through Ducts (Section 3-3, pp. 106 - 118) | NB! Time: 08.15 - 10.00 |
31.08.2006 | AFB | Rom B 935 | 3-3.5 Temperature Distribution in Fully Developed Duct Flow, 3-3.6 Asymptotic Uniform Heat Flux Approximation, 3-3.7 Thermal Entrance: THe Graetz Problem | Time: 12.15 - 14.00 |
05.09.2006 | AFB | Rom B 935 | 3-4 Unsteady duct flows, 3-5 Unsteady flows with moving boundaries | NB! Time: 08.15 - 10.00 |
07.09.2006 | AFB | Rom B 935 | Problems 3-1, 3-4, 3-5, 3-7, 3-8 | Time: 12.15 - 14.00 |
12.09.2006 | AFB | Rom B 935 | 3-5 Unsteady flows with moving boundaries, 3-6 Asymptotic Suction Flows (3-6.1, 3-6.2) | NB! Time: 08.15 - 10.00 |
14.09.2006 | AFB | Rom B 935 | Problem 3-9, 3-10, 3-11, 3-12, 3-13, 3-14 | Time: 12.15 - 14.00 |
19.09.2006 | AFB | Rom B 935 | 3-6 Asymptotic Suction Flows (3-6.2), 3-7 Wind-driven Flows | NB! Time: 08.15 - 10.00 |
21.09.2006 | AFB | Rom B 935 | Problem 3-15, 3-16, 3-17, 3-18, 3-21, 3-22 | NB! Time: 12.15 - 14.00 |
26.09.2006 | AFB | Rom B 935 | 3-8 Similarity solutions | NB! Time: 08.15 - 10.00 |
28.09.2006 | AFB | Rom B 935 | Pressure driven viscous flow in ducts with equilateral triangle and circular sector cross sections (see figure 3-9 in our textbook), problem 3-23, 3-24, 3-25 | NB! Time: 12.15 - 14.00 |
03.10.2006 | AFB | Rom B 935 | 3-8.1.4 Stagnation-point temp. distribution, 3-8.1.5 Reynolds analogy, 3-8.3 Jeffery-Hamel flow in a wedge-shaped region, 3-9 Low Reynolds number: Linearized Creeping Motion | NB! Time: 08.15 - 10.00 |
05.10.2006 | AFB | Rom B 935 | Solutions of: PROBLEM SET I MEK4300, problem 3-26, 3-27 and 3-29 will be discussed. | NB! Time: 12.15 - 14.00 |
10.10.2006 | No lecture this day | |||
12.10.2006 | No lecture this day | |||
17.10.2006 | AFB | Rom B 935 | 3-9.1 Creeping Flow . . . 3-9.2 Stokes solution . . . 3-9.3 Other Three Dimensional Body Shapes | NB! Time: 08.15 - 10.00 |
19.10.2006 | AFB | Rom B 935 | Solutions of problem 3-26, 3-27, 3-29 and 3-32 will be discussed. | NB! Time: 12.15 - 14.00 |
24.10.2006 | AFB | Rom B 935 | 3-9.3 Other Three Dimensional Body Shapes, 3-9.4 Two-dimensional Creeping Flow: Oseen's Improvement, 3-9.8 Lubrication Theory | NB! Time: 08.15 - 10.00 |
26.10.2006 | AFB | Rom B 935 | Problem 3-29, 3-32, 3-33, 3-34 | NB! Time: 12.15 - 14.00 |
31.10.2006 | AFB | Rom B 935 | 4 Laminar boundary Layers, 4-1 Introduction | NB! Time: 08.15 - 10.00 |
02.11.2006 | AFB | Rom B 935 | Problem 3-35, 3-36, 3-37, 3-38 and 3-39 | NB! Time: 12.15 - 14.00 Please remember: Two obligatory problem sets have to be solved and handed to AFB (deadline: 02.11.06) in written form. The first set can be found on the home page of the course under the main heading "Syllabus/achievement requirements". |
07.11.2006 | AFB | Rom B 935 | 4-1.6 Integral Analysis of the Energy Equation, 4-1.7 A Guessed Temp- - , 4-2 Laminar Boundary Layer Equations | NB! Time: 08.15 - 10.00 OBS! Oblig set II is available under the heading Syllabus/requirements. Your solution of the problems should be delivered no later than 16.11.06! |
09.11.2006 | AFB | Rom B 935 | 4.3 Similarity solutions for steady two-dimensional flow | NB! Time: 12.15 - 14.00 OBS! This thursday I give a lecture on the theory of boundary layers as announced. |
14.11.2006 | AFB | Rom B 935 | 4-3.2 Flat Plate Heat Transfer - -, 4-3.3 The Falkner-Skan Wedge Flows, 4-4 Free-Shear Flows | NB! Time: 08.15 - 10.00 |
19.11.2006 | AFB | Rom B 935 | 12.15 - 13.00: Problem 4-1, 4-2 and 4-3. - - - - - 13.15 -14.00: Chapter 6.1 Phys. and Math. description of turbulence. | NB! Time: 12.15 - 14.00 |
21.11.2006 | AFB | Rom B 935 | Ch 6.2 Kinetic energy equation (and other energy equations) in turbulent flows , Reynolds stress equation in turbulent flows. RANS (Reynolds averaged Navier Stokes equations) applied to duct flows (Ch. 6.5) | NB! Time: 08.15 - 10.00 |
23.11.2006 | AFB | Rom B 935 | RANS applied to duct flow (Ch. 6.5) and flat plate flow (Ch. 6.3 & 6.4) | NB! Time: 12.15 - 14.00 |
28.11.2006 | AFB | Rom B 935 | Chap. 6.7 Turbulence modeling | NB! Time: 08.15 - 10.00 |
30.11.2006 | AFB | Rom B 935 | Flat plate turbulent boundary layer flow (Chap. 6.3 & 6.4) | NB! Time: 12.15 - 14.00 |
Teaching plan
Published July 31, 2006 4:00 PM
- Last modified Nov. 27, 2006 9:55 AM