Advancement in Mixing Hydrodynamics using Motionless Mixer

A large number of scientists have been conducting research to improve the hydrodynamic characteristics of mixing of fluids. Out of these techniques, static mixing is adopted in this study to improve the mixing of fluids, which has a lead of negligible energy consumption in comparison with dynamic mi...

Full description

Bibliographic Details
Main Authors: Mazhar Hussain, Anwer Rasheed Saleemi, Javed Rabani
Format: Article
Language:English
Published: Mehran University of Engineering and Technology 2015-07-01
Series:Mehran University Research Journal of Engineering and Technology
Subjects:
Online Access:http://publications.muet.edu.pk/research_papers/pdf/pdf1131.pdf
_version_ 1818884725759016960
author Mazhar Hussain
Anwer Rasheed Saleemi
Javed Rabani
author_facet Mazhar Hussain
Anwer Rasheed Saleemi
Javed Rabani
author_sort Mazhar Hussain
collection DOAJ
description A large number of scientists have been conducting research to improve the hydrodynamic characteristics of mixing of fluids. Out of these techniques, static mixing is adopted in this study to improve the mixing of fluids, which has a lead of negligible energy consumption in comparison with dynamic mixers. Air Water system have been cast-off for mixing in which reduction in pressure, energy consumed, bubble diameter and mass transfer rate was mainly taken into account to design the static mixer element. Five different types of elements (Baffle, Plate, Blade, Needle and Wheel) were tested to observe and compare above mentioned hydrodynamic properties. Two point source characteristics i.e. reduction in pressure and bubble size, were carried out using Hg manometer and still photography respectively. Other nonpoint source characteristics (Energy depletion, rate of mixing) were found to be directly influenced by these point source characteristics. From the experimentations baffle element catches more importance, in terms of less energy depletion, more mixing rate, when compared with the other elements tested. This element becomes also comparable with other elements renowned in literature.
first_indexed 2024-12-19T15:54:07Z
format Article
id doaj.art-88c7457d1d7f414c8ff5eb1fe253a349
institution Directory Open Access Journal
issn 0254-7821
2413-7219
language English
last_indexed 2024-12-19T15:54:07Z
publishDate 2015-07-01
publisher Mehran University of Engineering and Technology
record_format Article
series Mehran University Research Journal of Engineering and Technology
spelling doaj.art-88c7457d1d7f414c8ff5eb1fe253a3492022-12-21T20:15:07ZengMehran University of Engineering and TechnologyMehran University Research Journal of Engineering and Technology0254-78212413-72192015-07-01343235240Advancement in Mixing Hydrodynamics using Motionless MixerMazhar Hussain0Anwer Rasheed Saleemi1Javed Rabani2Department of Chemical Engineering, University of Engineering & Technology, Lahore, PakistanDepartment of Chemical Engineering, University of Engineering & Technology, Lahore, PakistanDepartment of Chemical Engineering, University of Engineering & Technology, Lahore, PakistanA large number of scientists have been conducting research to improve the hydrodynamic characteristics of mixing of fluids. Out of these techniques, static mixing is adopted in this study to improve the mixing of fluids, which has a lead of negligible energy consumption in comparison with dynamic mixers. Air Water system have been cast-off for mixing in which reduction in pressure, energy consumed, bubble diameter and mass transfer rate was mainly taken into account to design the static mixer element. Five different types of elements (Baffle, Plate, Blade, Needle and Wheel) were tested to observe and compare above mentioned hydrodynamic properties. Two point source characteristics i.e. reduction in pressure and bubble size, were carried out using Hg manometer and still photography respectively. Other nonpoint source characteristics (Energy depletion, rate of mixing) were found to be directly influenced by these point source characteristics. From the experimentations baffle element catches more importance, in terms of less energy depletion, more mixing rate, when compared with the other elements tested. This element becomes also comparable with other elements renowned in literature.http://publications.muet.edu.pk/research_papers/pdf/pdf1131.pdfPoint Source CharacteristicsBubble SizeReduction in Pressure
spellingShingle Mazhar Hussain
Anwer Rasheed Saleemi
Javed Rabani
Advancement in Mixing Hydrodynamics using Motionless Mixer
Mehran University Research Journal of Engineering and Technology
Point Source Characteristics
Bubble Size
Reduction in Pressure
title Advancement in Mixing Hydrodynamics using Motionless Mixer
title_full Advancement in Mixing Hydrodynamics using Motionless Mixer
title_fullStr Advancement in Mixing Hydrodynamics using Motionless Mixer
title_full_unstemmed Advancement in Mixing Hydrodynamics using Motionless Mixer
title_short Advancement in Mixing Hydrodynamics using Motionless Mixer
title_sort advancement in mixing hydrodynamics using motionless mixer
topic Point Source Characteristics
Bubble Size
Reduction in Pressure
url http://publications.muet.edu.pk/research_papers/pdf/pdf1131.pdf
work_keys_str_mv AT mazharhussain advancementinmixinghydrodynamicsusingmotionlessmixer
AT anwerrasheedsaleemi advancementinmixinghydrodynamicsusingmotionlessmixer
AT javedrabani advancementinmixinghydrodynamicsusingmotionlessmixer