Numerical simulation of non-newtonian fluid at low reynolds number

Due to their complicated governing equations which contain more parameters than their Newtonian counterparts, many studies involving non-Newtonian fluids utilize numerical solvers such as ANSYS. Since numerical simulations lacks physical representation, ensuring a proper simulation setup is essentia...

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Bibliographic Details
Main Author: Koh, Aldric Boon Wee
Other Authors: Marcos
Format: Final Year Project (FYP)
Language:English
Published: 2017
Subjects:
Online Access:http://hdl.handle.net/10356/70536
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author Koh, Aldric Boon Wee
author2 Marcos
author_facet Marcos
Koh, Aldric Boon Wee
author_sort Koh, Aldric Boon Wee
collection NTU
description Due to their complicated governing equations which contain more parameters than their Newtonian counterparts, many studies involving non-Newtonian fluids utilize numerical solvers such as ANSYS. Since numerical simulations lacks physical representation, ensuring a proper simulation setup is essential to obtain accurate results. As such, various types of convergence such as iteration convergence and mesh convergence will be analysed. Adding on, simulations will be done to better understand the various simulation parameters and identify the appropriate setup. The capabilities of ANSYS is often limited by its inbuilt functions and User-Defined Functions is one way to bypass this limitation. Hence, various applications of these functions will be featured by introducing and implementing several C codes into ANSYS. C codes containing the power-law model and the Carreau model to describe the non-Newtonian fluid’s viscosity will then be validated to examine the potential of these User-Defined Functions. This study will therefore provide an insight on the feasibilities of adopting User-Defined Functions in numerical simulations and verify that these C codes do not compromise on the numerical accuracy of the solver.
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spelling ntu-10356/705362023-03-04T18:30:30Z Numerical simulation of non-newtonian fluid at low reynolds number Koh, Aldric Boon Wee Marcos School of Mechanical and Aerospace Engineering DRNTU::Engineering::Mechanical engineering::Fluid mechanics Due to their complicated governing equations which contain more parameters than their Newtonian counterparts, many studies involving non-Newtonian fluids utilize numerical solvers such as ANSYS. Since numerical simulations lacks physical representation, ensuring a proper simulation setup is essential to obtain accurate results. As such, various types of convergence such as iteration convergence and mesh convergence will be analysed. Adding on, simulations will be done to better understand the various simulation parameters and identify the appropriate setup. The capabilities of ANSYS is often limited by its inbuilt functions and User-Defined Functions is one way to bypass this limitation. Hence, various applications of these functions will be featured by introducing and implementing several C codes into ANSYS. C codes containing the power-law model and the Carreau model to describe the non-Newtonian fluid’s viscosity will then be validated to examine the potential of these User-Defined Functions. This study will therefore provide an insight on the feasibilities of adopting User-Defined Functions in numerical simulations and verify that these C codes do not compromise on the numerical accuracy of the solver. Bachelor of Engineering (Aerospace Engineering) 2017-04-26T08:49:49Z 2017-04-26T08:49:49Z 2017 Final Year Project (FYP) http://hdl.handle.net/10356/70536 en Nanyang Technological University 78 p. application/pdf
spellingShingle DRNTU::Engineering::Mechanical engineering::Fluid mechanics
Koh, Aldric Boon Wee
Numerical simulation of non-newtonian fluid at low reynolds number
title Numerical simulation of non-newtonian fluid at low reynolds number
title_full Numerical simulation of non-newtonian fluid at low reynolds number
title_fullStr Numerical simulation of non-newtonian fluid at low reynolds number
title_full_unstemmed Numerical simulation of non-newtonian fluid at low reynolds number
title_short Numerical simulation of non-newtonian fluid at low reynolds number
title_sort numerical simulation of non newtonian fluid at low reynolds number
topic DRNTU::Engineering::Mechanical engineering::Fluid mechanics
url http://hdl.handle.net/10356/70536
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