Low Reynolds Number Dynamics of Microfilaments for Artificial Swimming Applications
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Bester Preis: € 25,52 (vom 28.02.2023)1
Low Reynolds Number Dynamics of Microfilaments for Artificial Swimming Applications (2023)
~EN PB NW
ISBN: 9780432112632 bzw. 0432112634, vermutlich in Englisch, Independent Author, Taschenbuch, neu.
Von Händler/Antiquariat, AHA-BUCH GmbH [51283250], Einbeck, Germany.
nach der Bestellung gedruckt Neuware -Swimming is the practise of fluid mobility in living or inanimate objects. An energy source, a way for the body to move, and an interaction between the body and the fluid are three essential elements required to make it happen. However, macro-scale species like people, birds, and insects, as well as micro-scale creatures like sperm, E. coli, and paramecium, have quite different swimming mechanics. The balance between the inertial and viscous forces acting on a fluid is determined by the Reynolds number, which distinguishes one fluid from another. In the high Reynolds number zone, inertial forces dominate macro-scale swimming, enabling motion by overcoming viscous drag.However, low Reynolds number swimming necessitates a different approach because the swimmer must use non-reciprocal body undulation and anisotropy in viscous drag to overcome the viscous drag for net propulsive thrust. Low Reynolds number swimming has lately received increased attention due to its potential for the creation of smart drug delivery systems, in-vivo biosensing, and the disentanglement of nanofibers.The design, actuation, and navigation control of flagellated microswimming are examined in this thesis. A flexible microswimmer model is composed of a rigid head attached to a thin, elastic filament, or tail, which produces propulsion through periodic flapping. The filament can be actuated either through dispersed actuation along the filament body or boundary activation at the head-tail junction. The elastohydrodynamics of microswimming, which combines the hydrodynamic interaction between the filament and fluid with elastic vibrations of the filament, governs the dynamics of the swimmer. The fundamental physics of microswimming are now better understood thanks to a recent upsurge in theoretical and experimental study, which has improved energy-efficient propulsion, navigation control, and biocompatibility. 142 pp. Englisch, Books.
nach der Bestellung gedruckt Neuware -Swimming is the practise of fluid mobility in living or inanimate objects. An energy source, a way for the body to move, and an interaction between the body and the fluid are three essential elements required to make it happen. However, macro-scale species like people, birds, and insects, as well as micro-scale creatures like sperm, E. coli, and paramecium, have quite different swimming mechanics. The balance between the inertial and viscous forces acting on a fluid is determined by the Reynolds number, which distinguishes one fluid from another. In the high Reynolds number zone, inertial forces dominate macro-scale swimming, enabling motion by overcoming viscous drag.However, low Reynolds number swimming necessitates a different approach because the swimmer must use non-reciprocal body undulation and anisotropy in viscous drag to overcome the viscous drag for net propulsive thrust. Low Reynolds number swimming has lately received increased attention due to its potential for the creation of smart drug delivery systems, in-vivo biosensing, and the disentanglement of nanofibers.The design, actuation, and navigation control of flagellated microswimming are examined in this thesis. A flexible microswimmer model is composed of a rigid head attached to a thin, elastic filament, or tail, which produces propulsion through periodic flapping. The filament can be actuated either through dispersed actuation along the filament body or boundary activation at the head-tail junction. The elastohydrodynamics of microswimming, which combines the hydrodynamic interaction between the filament and fluid with elastic vibrations of the filament, governs the dynamics of the swimmer. The fundamental physics of microswimming are now better understood thanks to a recent upsurge in theoretical and experimental study, which has improved energy-efficient propulsion, navigation control, and biocompatibility. 142 pp. Englisch, Books.
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Low Reynolds Number Dynamics of Microfilaments for Artificial Swimming Applications (2023)
~EN PB NW
ISBN: 9780432112632 bzw. 0432112634, vermutlich in Englisch, Independent Author, Taschenbuch, neu.
Lieferung aus: Vereinigtes Königreich Großbritannien und Nordirland, Versandkosten nach: USA.
Von Händler/Antiquariat, Revaluation Books.
Independent Author, 2023. Paperback. New. 142 pages. 9.02x5.98x0.32 inches.
Von Händler/Antiquariat, Revaluation Books.
Independent Author, 2023. Paperback. New. 142 pages. 9.02x5.98x0.32 inches.
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Low Reynolds Number Dynamics of Microfilaments for Artificial Swimming Applications (2023)
~EN PB US
ISBN: 9780432112632 bzw. 0432112634, vermutlich in Englisch, Independent Author, Taschenbuch, gebraucht, guter Zustand.
Von Händler/Antiquariat, GreatBookPrices [5352716], Columbia, MD, U.S.A.
Unread book in perfect condition. Books.
Unread book in perfect condition. Books.
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Low Reynolds Number Dynamics of Microfilaments for Artificial Swimming Applications
DE PB NW
ISBN: 9780432112632 bzw. 0432112634, in Deutsch, independent Author, Taschenbuch, neu.
Lieferung aus: Deutschland, zzgl. Versandkosten, Shipping in 3 days.
Die Beschreibung dieses Angebotes ist von geringer Qualität oder in einer Fremdsprache. Trotzdem anzeigen
Die Beschreibung dieses Angebotes ist von geringer Qualität oder in einer Fremdsprache. Trotzdem anzeigen
6
Symbolbild
Low Reynolds Number Dynamics of Microfilaments for Artificial Swimming Applications (2023)
~EN PB NW
ISBN: 9780432112632 bzw. 0432112634, vermutlich in Englisch, Independent Author, Taschenbuch, neu.
Lieferung aus: Vereinigte Staaten von Amerika, zzgl. Versandkosten, Versandgebiet: DOM.
Von Händler/Antiquariat, GreatBookPricesLB2, MD, Columbia, [RE:5].
Trade paperback.
Von Händler/Antiquariat, GreatBookPricesLB2, MD, Columbia, [RE:5].
Trade paperback.
7
Symbolbild
Low Reynolds Number Dynamics of Microfilaments for Artificial Swimming Applications (2023)
~EN PB NW
ISBN: 9780432112632 bzw. 0432112634, vermutlich in Englisch, Independent Author, Taschenbuch, neu.
Lieferung aus: Vereinigte Staaten von Amerika, zzgl. Versandkosten, Versandgebiet: STOCKNEW.
Von Händler/Antiquariat, Alibris, NV, Sparks, [RE:5].
Trade paperback.
Von Händler/Antiquariat, Alibris, NV, Sparks, [RE:5].
Trade paperback.
8
Symbolbild
Low Reynolds Number Dynamics of Microfilaments for Artificial Swimming Applications (2023)
~EN PB US
ISBN: 9780432112632 bzw. 0432112634, vermutlich in Englisch, Independent Author, Taschenbuch, gebraucht, guter Zustand.
Lieferung aus: Vereinigtes Königreich Großbritannien und Nordirland, zzgl. Versandkosten, Versandgebiet: EUR.
Von Händler/Antiquariat, GreatBookPricesUK5, Derbyshire, Castle Donington, [RE:4].
Trade paperback.
Von Händler/Antiquariat, GreatBookPricesUK5, Derbyshire, Castle Donington, [RE:4].
Trade paperback.
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