Biological Fluid Dynamics Modeling Computations And Applications

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Biological Fluid Dynamics: Modeling, Computations, and Applications

Biological Fluid Dynamics: Modeling, Computations, and Applications
Author :
Publisher : American Mathematical Soc.
Total Pages : 250
Release :
ISBN-10 : 9780821898505
ISBN-13 : 0821898507
Rating : 4/5 (507 Downloads)

Book Synopsis Biological Fluid Dynamics: Modeling, Computations, and Applications by : Anita T. Layton

Download or read book Biological Fluid Dynamics: Modeling, Computations, and Applications written by Anita T. Layton and published by American Mathematical Soc.. This book was released on 2014-10-14 with total page 250 pages. Available in PDF, EPUB and Kindle. Book excerpt: This volume contains the Proceedings of the AMS Special Session on Biological Fluid Dynamics: Modeling, Computation, and Applications, held on October 13, 2012, at Tulane University, New Orleans, Louisiana. In recent years, there has been increasing interest in the development and application of advanced computational techniques for simulating fluid motion driven by immersed flexible structures. That interest is motivated, in large part, by the multitude of applications in physiology and biology. In some biological systems, fluid motion is driven by active biological tissues, which are typically constructed of fibers that are surrounded by fluid. Not only do the fibers hold the tissues together, they also transmit forces that ultimately result in fluid motion. In other examples, the fluid may flow through conduits such as blood vessels or airways that are flexible or active. That is, those conduits may react to and affect the fluid dynamics. This volume responds to the widespread interest among mathematicians, biologists, and engineers in fluid-structure interactions problems. Included are expository and review articles in biological fluid dynamics. Applications that are considered include ciliary motion, upside-down jellyfish, biological feedback in the kidney, peristalsis and dynamic suction pumping, and platelet cohesion and adhesion.


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