Simulation of Flexible Fibers in Stokes Flow: Numerical simulation of a flexible and natural bend fiber in Stokes flow

ISBN 10: 3847315579 / ISBN 13: 9783847315575
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Simulation of Flexible Fibers in Stokes Flow: Numerical simulation of a flexible and natural bend fiber in Stokes flow. N° de ref. de la librería

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Sinopsis: When elastic fibers are immersed in a Newtonian fluid, the behavior of the system, or the ?fiber suspension? becomes non-Newtonian. Understanding the dynamics of such systems is of particular interest in a wide variety of fields, including locomotion of microorganisms, paper and pulp industry, microfluidics etc. When these fibers are immersed in the fluid at low Reynolds number, the elastic equation for the fibers couples to the Stokes equations, which greatly increases the computational complexity of the problem. I have simulated buckling behavior of a single fiber suspended in a shear flow and have applied two numerical method, a slender body approximation known as Local Drag model and a regularized Boundary Integral method known as Regularized Stokeslet method. We have extended the Local Drag model to simulate naturally bent fibers based on the target or resting curvature of the fibers. Microorganisms possess fiber-like organs known as the appendages and swim by flapping these organs. We have also simulated swimming motion of a simple microorganism model by imposing a time dependent resting curvature of these fibers.

Biografía del autor: is a Lecturer at the National University of Sciences and Technology (NUST). He holds Masters degree in Scientific Computing from Kungliga Tekniska högskolan (KTH), Sweden and Bachelors degree in Information Technology from National University of Sciences and Technology, Pakistan

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Título: Simulation of Flexible Fibers in Stokes Flow...
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Jameel, Mohsan
Editorial: LAP Lambert Academic Publishing (2011)
ISBN 10: 3847315579 ISBN 13: 9783847315575
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Descripción LAP Lambert Academic Publishing, 2011. Estado de conservación: New. This item is printed on demand for shipment within 3 working days. Nº de ref. de la librería KP9783847315575

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Mohsan Jameel
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Descripción LAP Lambert Academic Publishing, 2011. PAP. Estado de conservación: New. New Book. Delivered from our UK warehouse in 3 to 5 business days. THIS BOOK IS PRINTED ON DEMAND. Established seller since 2000. Nº de ref. de la librería LQ-9783847315575

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Descripción LAP Lambert Academic Publishing, 2016. Paperback. Estado de conservación: New. PRINT ON DEMAND Book; New; Publication Year 2016; Not Signed; Fast Shipping from the UK. No. book. Nº de ref. de la librería ria9783847315575_lsuk

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Descripción LAP Lambert Academic Publishing, 2011. PAP. Estado de conservación: New. New Book. Shipped from US within 10 to 14 business days. THIS BOOK IS PRINTED ON DEMAND. Established seller since 2000. Nº de ref. de la librería IQ-9783847315575

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Descripción LAP Lambert Academic Publishing, Germany, 2011. Paperback. Estado de conservación: New. Aufl.. 220 x 150 mm. Language: English . Brand New Book ***** Print on Demand *****.When elastic fibers are immersed in a Newtonian fluid, the behavior of the system, or the fiber suspension becomes non-Newtonian. Understanding the dynamics of such systems is of particular interest in a wide variety of fields, including locomotion of microorganisms, paper and pulp industry, microfluidics etc. When these fibers are immersed in the fluid at low Reynolds number, the elastic equation for the fibers couples to the Stokes equations, which greatly increases the computational complexity of the problem. I have simulated buckling behavior of a single fiber suspended in a shear flow and have applied two numerical method, a slender body approximation known as Local Drag model and a regularized Boundary Integral method known as Regularized Stokeslet method. We have extended the Local Drag model to simulate naturally bent fibers based on the target or resting curvature of the fibers. Microorganisms possess fiber-like organs known as the appendages and swim by flapping these organs. We have also simulated swimming motion of a simple microorganism model by imposing a time dependent resting curvature of these fibers. Nº de ref. de la librería AAV9783847315575

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Mohsan Jameel
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Descripción LAP Lambert Academic Publishing. Paperback. Estado de conservación: New. Paperback. 92 pages. Dimensions: 8.7in. x 5.9in. x 0.2in.When elastic fibers are immersed in a Newtonian fluid, the behavior of the system, or the fiber suspension becomes non-Newtonian. Understanding the dynamics of such systems is of particular interest in a wide variety of fields, including locomotion of microorganisms, paper and pulp industry, microfluidics etc. When these fibers are immersed in the fluid at low Reynolds number, the elastic equation for the fibers couples to the Stokes equations, which greatly increases the computational complexity of the problem. I have simulated buckling behavior of a single fiber suspended in a shear flow and have applied two numerical method, a slender body approximation known as Local Drag model and a regularized Boundary Integral method known as Regularized Stokeslet method. We have extended the Local Drag model to simulate naturally bent fibers based on the target or resting curvature of the fibers. Microorganisms possess fiber-like organs known as the appendages and swim by flapping these organs. We have also simulated swimming motion of a simple microorganism model by imposing a time dependent resting curvature of these fibers. This item ships from multiple locations. Your book may arrive from Roseburg,OR, La Vergne,TN. Paperback. Nº de ref. de la librería 9783847315575

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