Beskjeder

Publisert 7. juni 2022 00:18

This is the schedule for the oral exam friday June 10th in NHA1120. Best of luck with the exam! 

10.00 Vetle
10.40 Vebj?rn
11.20 Michal
12.30 Boxue 
13.10 Vira
 

Publisert 2. juni 2022 01:07

This weeks lecture is moved to friday

Publisert 11. mai 2022 13:41

Since the last part of the excursuses will be presented in class next week, there will be no exercise class Thursday May 12th.

Publisert 6. mai 2022 13:37

The will be a summary lecture May 13 and May 20 Vira and Boxue will present two different ways to describe water entry through surfaces. For the lecture on May 20, everyone should have read the article by Duez et al. Please let us know if you have any difficulty with accessing the article. 

Publisert 3. mai 2022 15:25

There will be no lecture this Thursday so that you can work on your mandatory assignment.

Also, after we finish the phase field module we will have two lectures on "water impact of solid spheres" by Vira and Boxue. Everyone should read this article before the lectures.

Publisert 26. apr. 2022 16:51

Here is mandatory assignment 3. A numerical solver that can be used for the final exercise is found here. The deadline is 12th of May.

For additional reading material: the original paper by Cahn and Hilliard (1958) is located here and you can also check out this review paper on the phase-field method.

Publisert 22. apr. 2022 08:17

Todays lecture substituted with the talk by Anne Juel at 12.15 in the same room

Publisert 6. apr. 2022 10:08

of a thin film coating a wire. Here is the original paper by Goren (1962).

Publisert 23. mars 2022 13:54

Here is mandatory assignment 2. The delivery date is set to Wednesday 13th of April at 1430. In the assignment you are to compare two data sets with your theoretical predictions. The two sets are for droplets of two different viscosities and they are found here: mu=50cSt and mu=100cSt

Publisert 11. mars 2022 15:31

Do Q2-3 here. We will discuss them next Thursday.

Publisert 11. mars 2022 15:30

See article about 2D similarity solutions for thin film rupture here. What we discussed today can be found in Leal's book, section 6D.

Publisert 10. mars 2022 12:30

Read this for more information about similarity solutions for the gravity driven thin film equation.

Publisert 9. mars 2022 08:39

The relevant reading material from Leal's book is section 6A-D.

Publisert 2. mars 2022 10:42

Please do Q2 here and Q1-2 here. We will discuss them next Thursday (10th).

Publisert 28. feb. 2022 16:28

I have received some questions regarding the derivation of the Rayleigh-Plesset equation using the principle of energy conservation. Here are the definition of the relevant energies. 

Publisert 25. feb. 2022 13:20

Here is the original article by Minneart.

Publisert 25. feb. 2022 12:07

This can be helpful if you are not sure about the expression of viscous dissipation per unit volume.

Publisert 16. feb. 2022 15:42

Here is mandatory assignment 1. The delivery date is Thursday 3rd of march. We will discuss how to organise the experimental part on Friday.

Publisert 14. feb. 2022 10:32

There are no exercises for this week. Instead you should read section 4G 1-2 in Leal's book. For additional material you can check out this review paper on bubble dynamics.

We meet on Friday for our usual lecture.

Publisert 4. feb. 2022 14:05

Her er artikkelen til Proudman og Pearson som vi pratet om i timen.

Publisert 3. feb. 2022 21:53

Please finish Q5-Q7 found here. We will discuss it next Thursday (10th Feb).

Publisert 27. jan. 2022 14:33

Please finish Q1-Q4 found here. We will discuss it next Thursday (3rd Feb).

Publisert 20. jan. 2022 15:04

The first section of the course is discussed in chapter 7A-H in Leal's Advanced Transport Phenomena.

Publisert 20. jan. 2022 15:01

Problems 2-2, 2-4 and 2-8 on pages 99-100 inn Leal's book. We will discuss them next Thursday.

Publisert 20. jan. 2022 14:58

The syllabus for the spring will be selected from these books:

Primarily follow the book by:

“Advanced Transport Phenomena”, Gary Leal, Cambridge U. P.

“Capillarity and wetting phenomena”, de Gennes et al., Springer.

As mentioned, you should be able to access the book from Leal using your uio account here:

https://www.cambridge.org/core/books/advanced-transport-phenomena/9F2A633638780413DA73C6CB70A1D341 .