Fluid Structure Interaction

Author:   C. A. Brebbia (Wessex Institut of Technology) ,  G. R. Rodriguez
Publisher:   WIT Press
Volume:   129
ISBN:  

9781845647001


Pages:   292
Publication Date:   10 April 2013
Format:   Hardback
Availability:   In Print   Availability explained
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Fluid Structure Interaction


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Overview

Fluid-structure Interaction (FSI) is a scientific discipline spanning physics and engineering, which deals with the study of the interaction of solid or flexible structures with internal or surrounding fluid flows. FSI problems are encountered in many different branches of science and engineering, such as aerodynamics, hydrodynamics, and hemodynamics, covering problems across a wide range of time and space scales. Containing papers presented at the Seventh International Conference on the topic, this book covers new developments in fluid structure interaction problems. First organised in 2001, the conference includes contributions from international experts on a variety of topics, including: Hydrodynamics; Aeroelasticity; Computational Methods; Analytical Studies; Vortex Induced Vibrations; Experimental Studies and Validation; Industrial Applications.

Full Product Details

Author:   C. A. Brebbia (Wessex Institut of Technology) ,  G. R. Rodriguez
Publisher:   WIT Press
Imprint:   WIT Press
Volume:   129
ISBN:  

9781845647001


ISBN 10:   1845647009
Pages:   292
Publication Date:   10 April 2013
Audience:   College/higher education ,  Professional and scholarly ,  Postgraduate, Research & Scholarly ,  Professional & Vocational
Format:   Hardback
Publisher's Status:   Active
Availability:   In Print   Availability explained
This item will be ordered in for you from one of our suppliers. Upon receipt, we will promptly dispatch it out to you. For in store availability, please contact us.

Table of Contents

Contents Section 1: Hydrodynamics Breaking wave forces on a vertical pile;Evaluation of wave energy transmission through a floating breakwater using the SPH method; Hydrodynamic aspects of ship collisions with tension leg platforms Section 2: Aeroelasticity Aeroelastic studies of a cable stayed bridge in Talavera de la Reina, Spain; Wind tunnel sectional tests for the identification of flutter derivatives and vortex shedding in long span bridges; Assessment of flutter speed on long span bridges Section 3: Computational methods Smoothed particle hydrodynamics applied in fluid structure interactions; Numerical analysis of fluid flow in a three-dimensional porous enclosure by the Boundary Element Method; Blood flow simulation in the aorta with aortic valves using the regularized lattice Boltzmann method with an LES model; Fracture-matrix transfer function in fractured porous media Section 4: Analytical studies Nonstationary problem moisture elasticity for a nonhomogeneous hollow thick-walled cylinder; Longitudinal buckling of slender pressurised tubes Section 5: Vortex induced vibrations Numerical investigation on vortex-induced motion of a pivoted cylindrical body in uniform flow; Study on the characteristics of horseshoe vortex system upstream of an upright square cylinder subjected to a dam-break flow Section 6: Experimental studies and validation Wind tunnel study of gas dispersion in the presence of a rectangular building; Prediction of hydro-mechanical behaviour in a reactor core with a plate-type fuel assembly; Multimodal torsional vibrations for the characterization of complex fluids; Experimental validation of a CFD-based resistive force coefficient set for rotating helical tails in cylindrical channels; The temperature field of a gravitationally cast ductile-cast-iron roller and its chemical and structural heterogeneity; Experimental studies on the effect of the number of stages on the performance of an electrical submersible pump in two-phase flow conditions; Simulation and experimental validation of vibro-acoustic transmission through a passive automotive door mount system Section 7: Industrial applications FE-analysis of stresses in a Francis turbine runner at Derbendikhan power station; Axial length impact on high-speed centrifugal compressor flow

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