Effects of demagnetizing factors on transient motion of ferrofluid in a uniform rotating magnetic field

Thesis (S.B.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2011.

Bibliographic Details
Main Author: Snively, Michael John
Other Authors: Markus Zahn.
Format: Thesis
Language:eng
Published: Massachusetts Institute of Technology 2012
Subjects:
Online Access:http://hdl.handle.net/1721.1/68699
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author Snively, Michael John
author2 Markus Zahn.
author_facet Markus Zahn.
Snively, Michael John
author_sort Snively, Michael John
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description Thesis (S.B.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2011.
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spelling mit-1721.1/686992019-04-12T21:13:29Z Effects of demagnetizing factors on transient motion of ferrofluid in a uniform rotating magnetic field Snively, Michael John Markus Zahn. Massachusetts Institute of Technology. Dept. of Mechanical Engineering. Massachusetts Institute of Technology. Dept. of Mechanical Engineering. Mechanical Engineering. Thesis (S.B.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2011. This electronic version was submitted by the student author. The certified thesis is available in the Institute Archives and Special Collections. Cataloged from student submitted PDF version of thesis. Includes bibliographical references (p. 105). The mechanisms that lead to bulk flow within a ferrofluid-filled container subjected to a rotating uniform magnetic field are experimentally studied. There are two prevailing theories: spin diffusion theory and flow due to non-uniformities in magnetic field within the ferrofluid due to nonuniform demagnetizing factors. This research sought to confirm previous measurements that indicated demagnetizing factors are the primary cause of bulk ferrofluid flow. Flattened spherical containers of various volumes, and thus different demagnetizing factors, were filled with EFH1 oil-based ferrofluid and subjected to a uniform rotating magnetic field of varying conditions (rotation direction and field strength). The shapes and magnitudes of the velocity profiles measured by an ultrasound velocimeter system differed between containers, indicating that demagnetizing factors did affect flow. The complicated flows within the flattened spheres that affected both the shape and magnitude of the flow velocity prevented a direct magnitude comparison between profiles but the flows differed enough to safely conclude that spatial non-uniformities within the fluid likely caused the bulk flow of fluid in the uniform rotating magnetic field. by Michael John Snively. S.B. 2012-01-30T15:22:12Z 2012-01-30T15:22:12Z 2011 2011 Thesis http://hdl.handle.net/1721.1/68699 773702981 eng M.I.T. theses are protected by copyright. They may be viewed from this source for any purpose, but reproduction or distribution in any format is prohibited without written permission. See provided URL for inquiries about permission. http://dspace.mit.edu/handle/1721.1/7582 105 p. application/pdf Massachusetts Institute of Technology
spellingShingle Mechanical Engineering.
Snively, Michael John
Effects of demagnetizing factors on transient motion of ferrofluid in a uniform rotating magnetic field
title Effects of demagnetizing factors on transient motion of ferrofluid in a uniform rotating magnetic field
title_full Effects of demagnetizing factors on transient motion of ferrofluid in a uniform rotating magnetic field
title_fullStr Effects of demagnetizing factors on transient motion of ferrofluid in a uniform rotating magnetic field
title_full_unstemmed Effects of demagnetizing factors on transient motion of ferrofluid in a uniform rotating magnetic field
title_short Effects of demagnetizing factors on transient motion of ferrofluid in a uniform rotating magnetic field
title_sort effects of demagnetizing factors on transient motion of ferrofluid in a uniform rotating magnetic field
topic Mechanical Engineering.
url http://hdl.handle.net/1721.1/68699
work_keys_str_mv AT snivelymichaeljohn effectsofdemagnetizingfactorsontransientmotionofferrofluidinauniformrotatingmagneticfield