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Edith Cowan University (ECU, Australia): Research Online
Article . 2021
License: CC BY NC
Full-Text: https://ro.ecu.edu.au/ecuworkspost2013/10410
Data sources: Bielefeld Academic Search Engine (BASE)
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Sub-micron moulding topological mass transport regimes in angled vortex fluidic flow
ARC| Discovery Projects - Grant ID: DP200101106 ,
ARC| Discovery Projects - Grant ID: DP200101105
Authors: Thaar M. D. Alharbi; Thaar M. D. Alharbi; Xuan Luo; Kasturi Vimalanathan; Fayed A.J. Alrashaidi; Justin M. Chalker; Colin L. Raston; +11 Authors
Thaar M. D. Alharbi; Thaar M. D. Alharbi; Xuan Luo; Kasturi Vimalanathan; Fayed A.J. Alrashaidi; Justin M. Chalker; Colin L. Raston; Ibrahim K Alsulami; Wei Zhang; Keith A. Stubbs; Matt Jellicoe; Jamie S. Quinton; Darryl Jones; Ramiz A. Boulos; Bediea S. Al Harbi; Xianjue Chen; Aghil Igder; Aghil Igder;
Abstract
A rapidly rotating tube in the vortex fluidic device imparts submicron topological mass transport regimes, as moulded through crystallisation, polymerisation, and ‘molecular drilling’.
Country
Australia
Related Organizations
- Flinders University Australia
- Edith Cowan University Australia
- Al Jouf University Saudi Arabia
- UNSW Sydney Australia
- Taibah University Saudi Arabia
Keywords
[RSTDPub], 621, mechanical energy, VFD, vortex fluidic device, Chemistry, Engineering, angled vortex fluidic flow, topological mass transport regimes, Physical Sciences and Mathematics, sub-micron moulding
[RSTDPub], 621, mechanical energy, VFD, vortex fluidic device, Chemistry, Engineering, angled vortex fluidic flow, topological mass transport regimes, Physical Sciences and Mathematics, sub-micron moulding

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