A GUI-based numerical flow solver using the MacCormack’s scheme for Prandtl-Meyer expansion wave / Muhammad Imran Basseri

Prandtl-Meyer expansion fan is a flow phenomenon that occurs when a supersonic gas flows past through a convex comer, resulting in the formation of an expansion wave that consists of many Mach waves projected right at the comer. It is an inviscid, two-dimensional flow type that intended to be solved...

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Main Author: Basseri, Muhammad Imran
Format: Student Project
Language:English
Published: 2017
Subjects:
Online Access:https://ir.uitm.edu.my/id/eprint/53877/1/53877.PDF
https://ir.uitm.edu.my/id/eprint/53877/
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Institution: Universiti Teknologi Mara
Language: English
id my.uitm.ir.53877
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spelling my.uitm.ir.538772021-12-02T01:23:43Z https://ir.uitm.edu.my/id/eprint/53877/ A GUI-based numerical flow solver using the MacCormack’s scheme for Prandtl-Meyer expansion wave / Muhammad Imran Basseri Basseri, Muhammad Imran TJ Mechanical engineering and machinery Miscellaneous motors and engines.Including gas, gasoline, diesel engines Gas turbines Prandtl-Meyer expansion fan is a flow phenomenon that occurs when a supersonic gas flows past through a convex comer, resulting in the formation of an expansion wave that consists of many Mach waves projected right at the comer. It is an inviscid, two-dimensional flow type that intended to be solved with the means of numerical methods in preference than its exact analytical solutions counterpart, thereby making it fall under the Computational Fluid Dynamics (CFD) subject. The flow solver for the governing Euler equations in strong conservation form will be based on the MacCormack’s predictor-corrector explicit finite difference method. The coding for the solution of the flow has been done with the aid of a personal computer using MATLAB r2015a version followed by validation procedures to ensure the agreement of the obtained results with the analytical solution results. Subsequently, GUI-based program was coded and developed by MATLAB Graphical User Interface Development Environment (GUIDE) to make the solver program easier to use since a well-designed graphical user interface can free the user from learning complex command languages to solve the flow problem themselves. The program’s main purpose is to be intuitive and serves as education software to assist students to learn and understand the flow phenomena produced by this wave in the desired flow field. User will be required to fill the inlet air properties and the solver will return two types of results, a Mach contour mesh grid representation and the air properties at any x- location in tabulated form. 2017-07 Student Project NonPeerReviewed text en https://ir.uitm.edu.my/id/eprint/53877/1/53877.PDF ID53877 Basseri, Muhammad Imran (2017) A GUI-based numerical flow solver using the MacCormack’s scheme for Prandtl-Meyer expansion wave / Muhammad Imran Basseri. [Student Project] (Unpublished)
institution Universiti Teknologi Mara
building Tun Abdul Razak Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Mara
content_source UiTM Institutional Repository
url_provider http://ir.uitm.edu.my/
language English
topic TJ Mechanical engineering and machinery
Miscellaneous motors and engines.Including gas, gasoline, diesel engines
Gas turbines
spellingShingle TJ Mechanical engineering and machinery
Miscellaneous motors and engines.Including gas, gasoline, diesel engines
Gas turbines
Basseri, Muhammad Imran
A GUI-based numerical flow solver using the MacCormack’s scheme for Prandtl-Meyer expansion wave / Muhammad Imran Basseri
description Prandtl-Meyer expansion fan is a flow phenomenon that occurs when a supersonic gas flows past through a convex comer, resulting in the formation of an expansion wave that consists of many Mach waves projected right at the comer. It is an inviscid, two-dimensional flow type that intended to be solved with the means of numerical methods in preference than its exact analytical solutions counterpart, thereby making it fall under the Computational Fluid Dynamics (CFD) subject. The flow solver for the governing Euler equations in strong conservation form will be based on the MacCormack’s predictor-corrector explicit finite difference method. The coding for the solution of the flow has been done with the aid of a personal computer using MATLAB r2015a version followed by validation procedures to ensure the agreement of the obtained results with the analytical solution results. Subsequently, GUI-based program was coded and developed by MATLAB Graphical User Interface Development Environment (GUIDE) to make the solver program easier to use since a well-designed graphical user interface can free the user from learning complex command languages to solve the flow problem themselves. The program’s main purpose is to be intuitive and serves as education software to assist students to learn and understand the flow phenomena produced by this wave in the desired flow field. User will be required to fill the inlet air properties and the solver will return two types of results, a Mach contour mesh grid representation and the air properties at any x- location in tabulated form.
format Student Project
author Basseri, Muhammad Imran
author_facet Basseri, Muhammad Imran
author_sort Basseri, Muhammad Imran
title A GUI-based numerical flow solver using the MacCormack’s scheme for Prandtl-Meyer expansion wave / Muhammad Imran Basseri
title_short A GUI-based numerical flow solver using the MacCormack’s scheme for Prandtl-Meyer expansion wave / Muhammad Imran Basseri
title_full A GUI-based numerical flow solver using the MacCormack’s scheme for Prandtl-Meyer expansion wave / Muhammad Imran Basseri
title_fullStr A GUI-based numerical flow solver using the MacCormack’s scheme for Prandtl-Meyer expansion wave / Muhammad Imran Basseri
title_full_unstemmed A GUI-based numerical flow solver using the MacCormack’s scheme for Prandtl-Meyer expansion wave / Muhammad Imran Basseri
title_sort gui-based numerical flow solver using the maccormack’s scheme for prandtl-meyer expansion wave / muhammad imran basseri
publishDate 2017
url https://ir.uitm.edu.my/id/eprint/53877/1/53877.PDF
https://ir.uitm.edu.my/id/eprint/53877/
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