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FVTool | FVTool

A finite volume tool in Matlab and Julia

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FVTool | FVTool | fvt.simulkade.com Reviews

https://fvt.simulkade.com

A finite volume tool in Matlab and Julia

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Switched to Nikola | FVTool

http://fvt.simulkade.com/posts/2015-03-29-switched-to-nikola.html

Skip to main content. Today, I switched this blog from Octopress. I did it mostly because I'm more comfortable with Python, and of course the new exciting version of ipython, which is now called Jupyter. I think I'm going to stick to this format for a while. Comments powered by Disqus.

2

Choosing the right cell averaging method for linearized PDEs | FVTool

http://fvt.simulkade.com/posts/2015-04-20-choosing-the-right-averaging-method-for-fvm.html

Skip to main content. Choosing the right cell averaging method for linearized PDEs. Choosing the right averaging method. Another look at the equations. Definition of functions in JFVM. Linearized PDE (Newton method). Case 1: upwind convection with arithmetic average. Case 2: central convection with arithmetic average. Case 3: central convection with linear average. Case 4: upwind convection with upwind average. Choosing the right averaging method. Another look at the equations. INFO: Loading help data.

3

Tags and Categories | FVTool

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Skip to main content. Diffusion, Transient, FVM]. FVM, heat conduction, diffusion, Robin].

4

Solving nonlinear PDEs with FVM | FVTool

http://fvt.simulkade.com/posts/2015-04-06-solving-nonlinear-pdes-with-fvm.html

Skip to main content. Solving nonlinear PDEs with FVM. I'm going to try a simple one here. I say try because I'm actually making it up right now. The equation reads $ frac{ partial phi}{ partial t} nabla . (-D nabla phi) =0$ where $ D=D 0(1 phi 2).$ It means that the diffusion coefficient is increased when the concentration of the solute increases. Here, I'll implement the procedure in JFVM. The same procedure can be done in FVtool. INFO: Loading help data. Create a 1D mesh. Define the initial condition.

5

Lid-driven flow in a cavity: Navier-Stokes in FVTool | FVTool

http://fvt.simulkade.com/posts/2015-10-28-lid-driven-flow-in-a-cavity-navier-stokes-in-fvtool.html

Skip to main content. Lid-driven flow in a cavity: Navier-Stokes in FVTool. This is a very short post. Kai. Implemented the lid-driven cavity. Problem in FVTool, something that I couldn't have done soon or perhaps ever. You can find his implementation here. This is a contour plot of the velocity profile:. In case you look into the files, please don't compare his programming style with mine. My style is quite embarrassing! Comments powered by Disqus.

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Physical properties in Julia: CoolProp | SIMULKADE

http://www.simulkade.com/posts/Physical%20properties%20in%20Julia:%20CoolProp.html

Skip to main content. Physical properties in Julia: CoolProp. And his group have developed a few highly-accurate equations of state for industrial applications and I knew that there is a software called FPROPS. Which is used in Ascend IV. Package. Searching the name in google showed me a fantastic package called CoolProp. Which is being developed mostly in thermodynamics laboratory. In Universite de Liege. Package in Julia. First I installed the. Package using the instructions here.

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Matlab and Julia -- Part II | SIMULKADE

http://www.simulkade.com/posts/Matlab%20and%20Julia%20--%20Part%20II.html

Skip to main content. Matlab and Julia - Part II. In the previous post, I explained how to program the solution procedure of Buckley-Leverett equation in Matlab. Here, I'm trying to move everything to Julia. First, you need to install Julia, and a few important packages. Personally, I prefer the last development version. In Ubuntu-based distributions, you can install it by writing the following lines in the terminal. You can get installers for other OS's here. Then, run Julia and add the PyPlot. The code...

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Install Octave 4.0 on Mint 17.1/Ubuntu 14.04 | SIMULKADE

http://www.simulkade.com/posts/2015-06-20-install-octave-40-on-mint-171ubuntu-1404.html

Skip to main content. Install Octave 4.0 on Mint 17.1/Ubuntu 14.04. Version 4.0 is out, and the good news is that it has a. Feature similar to Matlab. I will soon use it to update my FVTool. So that it can be used with all functionalities in Octave as well. I had to install some more libraries on my Mint 17.1 operating system. First, install these dependencies:. Then, download the octave source code. For version 4.0.0 from here. Configure - enable-jit make sudo make install. It should launch the user int...

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A New Start | SIMULKADE

http://www.simulkade.com/posts/the-first-test-post.html

Skip to main content. I have started two new blogs to achieve two goals. Write more and share my work. My new blogs are. A (toy) finite volume toolbox for Matlab. You can find the blog here. And the code here. A PVT toolbox for Matlab. It is not released yet. Hopefully, I will release it in August, on my daughter's birthday. The website is here. And the code will be here. Comments powered by Disqus.

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Spell checking in Jupyter notebooks | SIMULKADE

http://www.simulkade.com/posts/2015-04-07-spell-checking-in-jupyter-notebooks.html

Skip to main content. Spell checking in Jupyter notebooks. This afternoon I found a nice spellchecker for Jupyter markdown cells here. Here's the step by step procedure for the installation of the spellchecker and two other usefull tools:. Open a terminal window and type. And add the following line to the end of. IPython.load extensions('calico-spell-check', 'calico-document-tools', 'calico-cell-tools');. If everything goes well, you should see the following addition to the toolbar:.

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JFVM: a finite volume tool for Julia | SIMULKADE

http://www.simulkade.com/posts/jfvm-a-finite-volume-tool-for-julia.html

Skip to main content. JFVM: a finite volume tool for Julia. During the Christmass holydays, I spent some time to convert my Matlab FVTool. To a Julia package. The result, which I call JFVM. Is a bit Matlabesque, but the package works. In this post I'm going to show how it works. To install the package, you can use. In Julia, or clone the most recent version (recommended). You need to have Julia installed. JFVM relies on. For visualization. Here's the procedure. You need to first install Python. This is p...

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All I need after a fresh installation of Linux Mint | SIMULKADE

http://www.simulkade.com/posts/2015-05-29-all-i-need-after-a-fresh-installation-of-linux-mint.html

Skip to main content. All I need after a fresh installation of Linux Mint. I had some issues with my laptop, so I decided to re-install linux mint/Mate. This is the sequence of task for making my installation ready for work:. Keyboard layout (start menu - keyboard - layouts - add, and then in Options - switching to another layout - alt shift). Install the newest version of lyx. Sudo add-apt-repository ppa:inkscape.dev/stable sudo apt-get update sudo apt-get install inkscape. Sudo pip install pydicom.

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How to smoothen noisy data | SIMULKADE

http://www.simulkade.com/posts/2015-05-07-how-to-smoothen-noisy-data.html

Skip to main content. How to smoothen noisy data. The data points that I obtain in my core flooding experiments are very noisy, due to the fluctuations in the back pressure valve and the unsable nature of foam. I use. Function of Matlab to make the data smoother mostly for a better visualization of the results. I missed this function in Julia, until I found this. Python code that I could call from Julia thanks to PyCall. Function, which is also available in Julia. For the window functions. I used the DSP.

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Matlab and Julia -- Part I | SIMULKADE

http://www.simulkade.com/posts/Matlab%20and%20Julia%20--%20Part%20I.html

Skip to main content. Matlab and Julia - Part I. For instance, consider the fractional flow function:. F w = frac {k {rw}/ mu w}{k {rw}/ mu w k {ro}/ mu o} $ where I'm not going to explain what the parameters are because as my friend Hamid said, you either know it, or you are not going to learn it here anyway! The relative permeabilities read. K {rw}(S w) = k {rw} 0 (S w *) {n w} $. K {ro}(S w) = k {ro} 0 (1-S w *) {n o} $. S w * = frac{S w - S {wc} {1-S {wc}-S {or} . $. The functions are easy to define:.

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Archive | SIMULKADE

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Skip to main content. Lid-driven flow in a cavity: Navier-Stokes in FVTool. This is a very short post. Kai. Implemented the lid-driven cavity. Problem in FVTool, something that I couldn't have done soon or perhaps ever. You can find his implementation here. This is a contour plot of the velocity profile:. In case you look into the files, please don't compare his programming style with mine. My style is quite embarrassing! Coupled nonlinear PDEs: two phase flow in porous media. Now, we create a mesh and i...

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