THIS BOOK IS DEDICATED TO THE GENERAL STUDY OF FLUID STRUCTURE INTERACTION WITH CONSIDERATION OF UNCERTAINTIES. THE FLUID–STRUCTURE INTERACTION IS THE STUDY OF THE BEHAVIOR OF A SOLID IN CONTACT WITH A FLUID, THE RESPONSE CAN BE STRONGLY AFFECTED BY THE ACTION OF THE FLUID. THESE PHENOMENA ARE COMMON AND ARE SOMETIMES THE CAUSE OF THE OPERATION OF CERTAIN SYSTEMS, OR OTHERWISE MANIFEST MALFUNCTION. THE VIBRATIONS AFFECT THE INTEGRITY OF STRUCTURES AND MUST BE PREDICTED TO PREVENT ACCELERATED WEAR OF THE SYSTEM BY MATERIAL FATIGUE OR EVEN ITS DESTRUCTION WHEN THE VIBRATIONS EXCEED A CERTAIN THRESHOLD.
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The field of fluid―structure interactions groups together the study of all phenomena that present the coupling of the movement of a structure with that of a fluid. This is the mutuel interaction that can link a fluid domain to its surrounding structure. The range of phenomena studied is very wide, from the study of vibrating cylinders in flows, as is the case in the nuclear industry, to vibrating structures in turbulent flows, and to free surface phenomena in reservoirs. This book deals with the different aspects of fluid-structure interaction ― vibro-acoustic and aerodynamic ― by reducing the coupled fluid-structure model. Uncertainties are present in the study of the latter. An entire chapter is reserved for reliability-based design optimization (RBDO). The calculation tools used are : Ansys for the calculation of structures and Fluent for the calculation of fluids. For the examples processed using Ansys, the computer software is provided. Accompanied by detailed examples and including uncertainties, optimization and reliability, Fluid―Structure Interactions and Uncertainties presents the new, most effective design tools. The book is intended for engineering students and is a valuable support for practicing engineers and teacher-researchers.
El Hami Abdelkhalak, Professor at INSA Rouen - Normandy University. Radi Bouchaib, Professor of Higher Education Hassan First University, Settat.
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