Bingham Fluid Flow in the Entrance Region of a Pipe

A Master of Science thesis in Chemical Engineering by Basma Mokhtar Hussein Mohamed Baioumy entitled, “Bingham Fluid Flow in the Entrance Region of a Pipe”, submitted in May 2019. Thesis advisor is Dr. Rachid Chebbi and thesis co-advisor is Dr. Nabil Abdel Jabbar. Soft and hard copy available.

محفوظ في:
التفاصيل البيبلوغرافية
المؤلف الرئيسي: Baioumy, Basma Mokhtar Hussein Mohamed (author)
التنسيق: doctoralThesis
منشور في: 2019
الموضوعات:
الوصول للمادة أونلاين:http://hdl.handle.net/11073/16470
الوسوم: إضافة وسم
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author Baioumy, Basma Mokhtar Hussein Mohamed
author_facet Baioumy, Basma Mokhtar Hussein Mohamed
author_role author
dc.contributor.none.fl_str_mv Chebbi, Rachid
Abdel Jabbar, Nabil
dc.creator.none.fl_str_mv Baioumy, Basma Mokhtar Hussein Mohamed
dc.date.none.fl_str_mv 2019-06-16T06:33:07Z
2019-06-16T06:33:07Z
2019-05
dc.format.none.fl_str_mv application/pdf
dc.identifier.none.fl_str_mv 35.232-2019.26
http://hdl.handle.net/11073/16470
dc.language.none.fl_str_mv en_US
dc.subject.none.fl_str_mv Non-Newtonian
Bingham
Entrance Region
Momentum Integral Method
Viscoplasticity
Fluid mechanics
dc.title.none.fl_str_mv Bingham Fluid Flow in the Entrance Region of a Pipe
dc.type.none.fl_str_mv info:eu-repo/semantics/publishedVersion
info:eu-repo/semantics/doctoralThesis
description A Master of Science thesis in Chemical Engineering by Basma Mokhtar Hussein Mohamed Baioumy entitled, “Bingham Fluid Flow in the Entrance Region of a Pipe”, submitted in May 2019. Thesis advisor is Dr. Rachid Chebbi and thesis co-advisor is Dr. Nabil Abdel Jabbar. Soft and hard copy available.
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oai_identifier_str oai:repository.aus.edu:11073/16470
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repository.name.fl_str_mv
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spelling Bingham Fluid Flow in the Entrance Region of a PipeBaioumy, Basma Mokhtar Hussein MohamedNon-NewtonianBinghamEntrance RegionMomentum Integral MethodViscoplasticityFluid mechanicsA Master of Science thesis in Chemical Engineering by Basma Mokhtar Hussein Mohamed Baioumy entitled, “Bingham Fluid Flow in the Entrance Region of a Pipe”, submitted in May 2019. Thesis advisor is Dr. Rachid Chebbi and thesis co-advisor is Dr. Nabil Abdel Jabbar. Soft and hard copy available.The isothermal laminar flow of a Bingham fluid in the entrance region of a circular pipe has been studied previously by many authors using different approaches. As current research stands, the momentum integral approach provides analytical results that do not match the boundary-layer thickness experimental data for Newtonian fluid flow. No experimental data is currently available for the velocity profiles in the entrance region for Bingham fluids. The objective of this investigation is to determine the entrance region length in addition to the velocity and pressure profiles in the entrance region using a modified momentum integral method that improves the previously published boundary-layer model. The present work results reach asymptotically the fully developed values and show good agreement with published experimental data for pressure drop in the entrance region. The results are also in good agreement with the boundary-layer thickness experimental data for Newtonian fluid flow.College of EngineeringDepartment of Chemical EngineeringMaster of Science in Chemical Engineering (MSChE)Chebbi, RachidAbdel Jabbar, Nabil2019-06-16T06:33:07Z2019-06-16T06:33:07Z2019-05info:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/doctoralThesisapplication/pdf35.232-2019.26http://hdl.handle.net/11073/16470en_USoai:repository.aus.edu:11073/164702025-06-26T12:33:19Z
spellingShingle Bingham Fluid Flow in the Entrance Region of a Pipe
Baioumy, Basma Mokhtar Hussein Mohamed
Non-Newtonian
Bingham
Entrance Region
Momentum Integral Method
Viscoplasticity
Fluid mechanics
status_str publishedVersion
title Bingham Fluid Flow in the Entrance Region of a Pipe
title_full Bingham Fluid Flow in the Entrance Region of a Pipe
title_fullStr Bingham Fluid Flow in the Entrance Region of a Pipe
title_full_unstemmed Bingham Fluid Flow in the Entrance Region of a Pipe
title_short Bingham Fluid Flow in the Entrance Region of a Pipe
title_sort Bingham Fluid Flow in the Entrance Region of a Pipe
topic Non-Newtonian
Bingham
Entrance Region
Momentum Integral Method
Viscoplasticity
Fluid mechanics
url http://hdl.handle.net/11073/16470