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2D Lid-Driven Cavity Problem using Artificial Compressibility Method on incompressible Newtontian fluid in MATLAB

$30-250 USD

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Publicerad över två år sedan

$30-250 USD

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Hi, I would like to test the Artificial Compressibility Method in MATLAB. It should be quite straightforward to do using collocated mesh, since I would like to use explicit time integration (Explicit Euler). For spatial derivatives, I would like to use central differences. If you feel it is necessary, you can use staggered mesh. I have attached what I believe are the three governing equations from continuity and x,y momentum. I think the procedure should be as follows: - initial velocity zero everywhere - solve three equations (continuity, x, and y momentum) simultaneously for one artificial "timestep", update velocity and pressure fields, move to the next "timestep" -> in the comments please briefly explain the convergence / steady state criteria selected. - do central difference for spatial integration, but explicit time integration is the really critical component. - **** explicit euler (important: not implicit!) ******* for time integration - BC are U = 0 on bottom, left, right side of cavity and U = 1 on top of cavity (everything is in nondimensional form). Please see attached schematic. Some questions to answer in comments of code, and with graphs please: - compute and visualize steady state streamlines for Reynolds number (Re) of 100 and 400. - also graphically compare x and y components of velocity along the steady state horizontal and vertical centerlines. - Try doubling the grid resolution (3 different grids) and ensure that velocity profiles are converging to those seen in literature. - Please compute the spatial convergence rate of the overall scheme (attached reference may be helpful to see how they are doing this: p222, 256). This information can be extracted from the previous three grid resolutions mentioned above. Please let me know if you have further questions! - You can validate results using Ghia, U. K. N. G., Kirti N. Ghia, and C. T. Shin. "High-Re solutions for incompressible flow using the Navier-Stokes equations and a multigrid method." Journal of computational physics 48.3 (1982): 387-411. Please let me know if I can clarify anything further!
Project ID: 32031256

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Hello, I'm an Aerospace Engineer. I have strong experience in Matlab, also implemented many CFD techniques in Matlab, even most recently (check my profile). I've read your problem statement clearly, and I think I can finish your project within the next 4 days. So please contact for further discussion.
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2D Lid-Driven Cavity Problem using Artificial Compressibility Method on incompressible Newtontian fluid in MATLAB This project is my strength and I can fulfill your requirements properly within your given deadline. I always give plagiarism-free work to my clients at very competitive prices. I have more than 10 years of writing experience, I have served more than 4000 clients on other forums including; Upwork, Fiverr and Guru. I have full grip over; Reports , Essays, Case Studies, Summaries and Dissertation Writing. Please give me a chance to show you my writing abilities. I am waiting for you. :)
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2D Lid-Driven Cavity Problem using Artificial Compressibility Method on incompressible Newtontian fluid in MATLAB Since 2012, almost from 8 years I am managing academic writing tasks successfully. I am working with my friends from different backgrounds, it means I can manage wide range of projects like; Engineering, Business, Arts, Computer Sciences, Medical Sciences, Mathematics and Statistics. Now I am here on freelancer.com to serve my clients with masterpiece against very REASONABLE PRICES. I can help you with your Online Exams, Quizzes, Summaries, Research Papers, Reports and Dissertations and ETC. I provide FREE Turnitin reports and countless revisions to my clients. I PROMISE you 100% SUCCESS. For samples, visit my profile: https://www.freelancer.com/u/FineIdeas
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