[CFD] Pressure-based Coupled Solver (Part 1)

  Рет қаралды 11,010

Fluid Mechanics 101

Fluid Mechanics 101

Күн бұрын

An introduction to pressure-based coupled algorithms that are used by modern CFD codes including ANSYS Fluent, OpenFOAM and ANSYS CFX to address the pressure-velocity coupling in the Navier-Stokes equations.
Timestamps
0:00 Introduction
0:55 Pressure Gradient (Gauss Integration)
6:46 Face Pressure Interpolation
12:15 Example Force Calculation
15:51 Simplified Form
17:22 Segregated Algorithms (SIMPLE, PISO)
19:22 Explicit Pressure Gradient
22:38 Implicit Pressure Gradient
24:28 v Momentum Equation
27:23 Pressure Equation
29:07 Block Matrix
31:53 System Iteration
32:56 Summary
34:20 Outro
Some useful references:
M. Darwish, I. Sraj, F. Moukalled, 'A coupled finite volume solver for the solution of incompressible flows on unstructured grids', Journal of Computational Physics 228 (2009) 180-201. doi:10.1016/j.jcp.2008.08.027
H. Jasak, 'Coupled Flow Solution Algorithms in OpenFOAM', TOBB ETU, Ankara, 23 October 2019.
#pressure-velocity-coupling #cfd #fluidmechanics
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Disclaimer
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The methods, algorithms, equations, formulae, diagrams and explanations in this talk are for educational and demonstrative purposes only. They should never be used to analyse, design, accredit or validate real scientific / engineering / mathematical structures and flow systems. For such applications, appropriate trained, qualified and accredited (SQEP) engineers / scientists should be consulted along with the appropriate documentation, procedures and engineering standards. Furthermore, the information contained within this talk has not been verified, peer reviewed or checked in any way and is likely to contain several errors. It is therefore not appropriate to use this talk itself (or any of the algorithms, equations, formulae, diagrams and explanations contained within this talk) as an academic or technical reference. The reader should consult the original references and follow the verification and validation processes adopted by your company / institution when carrying out engineering calculations and analyses. Fluid Mechanics 101 and Dr. Aidan Wimshurst are not accountable or liable in any form for the use or misuse of the information contained in this talk beyond the specific educational and demonstrative purposes for which it was intended.

Пікірлер: 28
@darshangohel6873
@darshangohel6873 8 ай бұрын
Outstanding content. Hats off to you, Dr Aiden !!! 👏👏👏
@abdoulkadermoussasiddo1777
@abdoulkadermoussasiddo1777 4 ай бұрын
I just wanna say I actually validate your video. It is so clear, so limpid. I did not finish watching it, but I paused to subscribe. Without any doubt, you are a good lecturer.
@Rafael-es3go
@Rafael-es3go 8 ай бұрын
Your channel its the best in CFD content, please dont stop uploading new content
@samuelemaestroni3806
@samuelemaestroni3806 7 ай бұрын
I've watched every video on your channel, and this comment applies to each one of them. Your explanations are exceptionally clear, and your teaching style is brilliant. These videos are fantastic and incredibly helpful for my master's thesis. Thank you from a (soon to be) aeronautical engineer.
@thedeerish
@thedeerish 8 ай бұрын
Thank you so much for all of this! It helps a lot. I don't know of any other people or literature sources which are able to (or dare to) convey these fundamentals this clearly.
@minjoong6687
@minjoong6687 8 ай бұрын
Finally!! I've been waiting for the lecture on this 'Coupled solver' since I saw your lecture on SIMPLE and PISO algorithm. Thank you soooo much Sir! Love from South Korea.
@alfamaniacGR
@alfamaniacGR 8 ай бұрын
Amazing as always! This man never disappoints!
@MyMatiasR
@MyMatiasR 8 ай бұрын
Watching from Brazil. Your content is unmatched!
@mamleshbohari2200
@mamleshbohari2200 7 ай бұрын
Please upload the part 2 ASAP, Sir. Really excited for it! ... and this work of yours is gold. 😍
@user-us9wd3un7t
@user-us9wd3un7t 7 ай бұрын
Thanks, You really made it look easier, with your clear explanation, waiting for the part-2.
@apocalypt0723
@apocalypt0723 8 ай бұрын
I was waiting for this. Thank you Dr. Aidan
@cronos864
@cronos864 8 ай бұрын
Another great lecture. Thanks and keep going!
@AIRFLOWbr
@AIRFLOWbr 8 ай бұрын
Amazing! Thank you for the content!
@abzrg
@abzrg 8 ай бұрын
thanks for the, as always, amazing lectures.
@hyoung-hokim9164
@hyoung-hokim9164 8 ай бұрын
Thank you so much. Dr Aiden !!!
@bernardbayangbe2745
@bernardbayangbe2745 18 күн бұрын
The best. Thanks
@hectorroa123
@hectorroa123 7 ай бұрын
Thank you so much for this video
@jacks.554
@jacks.554 7 ай бұрын
First of thank you for the content you are creating. As regards the video, is the interpolation formula (6) really like that? I believe that pP and pN should be swapped to make sense. Thanks!
@sudamranasinghe8302
@sudamranasinghe8302 6 ай бұрын
Impressive sir😍
@sondrewikberg3534
@sondrewikberg3534 7 ай бұрын
What a legend
@pietrobelli2217
@pietrobelli2217 7 ай бұрын
really great content, and the clarity of your explanations are without rivals. one question: what do you use for creating those harmonious images and graphics?
@fluidmechanics101
@fluidmechanics101 7 ай бұрын
Inkscape 👍 I also have a cheap course to show you how to use it if you are interested (like $20 I think). There should be a link somewhere
@pietrobelli2217
@pietrobelli2217 7 ай бұрын
Thank you for the response! I will check it out 👌
@JoeLister-Symonds
@JoeLister-Symonds 12 күн бұрын
How is the pressure at a cell face adjacent to a wall boundary calculated? In order to calculate the pressure force on a body for example
@user-fj6xv4bf3c
@user-fj6xv4bf3c 7 ай бұрын
Could you introduce some paper for the coupling algorithm? Thank you!
@KingofHarmony
@KingofHarmony 6 ай бұрын
Is this similar to the coupled algorithm used for multiphase flow?
@15ayushman
@15ayushman 7 ай бұрын
When i select a pressure based solver for my compressible flow problem along with the dpm model, I see the PC-simple option. What is this?
@sameerverma6949
@sameerverma6949 7 ай бұрын
Sir please make the videos on eulerian wall film model of Ansys fluent
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