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The effects of non-Newtonian fluids ...
~
Ashur, Dor Yisrael.
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The effects of non-Newtonian fluids on Purcell's Scallop Theorem .
Record Type:
Language materials, printed : Monograph/item
Title/Author:
The effects of non-Newtonian fluids on Purcell's Scallop Theorem ./
Author:
Ashur, Dor Yisrael.
Description:
70 p.
Notes:
Source: Masters Abstracts International, Volume: 48-06, page: 3867.
Contained By:
Masters Abstracts International48-06.
Subject:
Engineering, Mechanical. -
Online resource:
http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=1477882
ISBN:
9781124067544
The effects of non-Newtonian fluids on Purcell's Scallop Theorem .
Ashur, Dor Yisrael.
The effects of non-Newtonian fluids on Purcell's Scallop Theorem .
- 70 p.
Source: Masters Abstracts International, Volume: 48-06, page: 3867.
Thesis (M.S.)--University of California, San Diego, 2010.
Many common fluids such as blood, oils and shampoos exhibit non-Newtonian properties, and low Reynolds flow is ubiquitous in micro-scale swimmers such as flagellum and bacteria. Purcell's Scallop Theorem states that locomotion via a single time-independent degree of movement through low Reynolds flow is impossible as the effects of momentum are negligible. Experimentation was performed to prove that propulsion, via a singular rotational, or linear degree-of-freedom, is possible by employing the normal stresses and shear thinning capabilities of non-Newtonian fluids, respectively. This study also discusses non-Newtonian fluid rheometry, as well as the design and control of the swimming robots.
ISBN: 9781124067544Subjects--Topical Terms:
783786
Engineering, Mechanical.
The effects of non-Newtonian fluids on Purcell's Scallop Theorem .
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Source: Masters Abstracts International, Volume: 48-06, page: 3867.
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Adviser: Eric Lauga.
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Thesis (M.S.)--University of California, San Diego, 2010.
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Many common fluids such as blood, oils and shampoos exhibit non-Newtonian properties, and low Reynolds flow is ubiquitous in micro-scale swimmers such as flagellum and bacteria. Purcell's Scallop Theorem states that locomotion via a single time-independent degree of movement through low Reynolds flow is impossible as the effects of momentum are negligible. Experimentation was performed to prove that propulsion, via a singular rotational, or linear degree-of-freedom, is possible by employing the normal stresses and shear thinning capabilities of non-Newtonian fluids, respectively. This study also discusses non-Newtonian fluid rheometry, as well as the design and control of the swimming robots.
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http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=1477882
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