An Analytical Mechanics Framework For Flow Oscillator Modeling Of Vortex Induced Bluff Body Oscillations
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An Analytical Mechanics Framework for Flow Oscillator Modeling of Vortex Induced Bluff Body Oscillations
Author | : Sohrob Mottaghi,Rene Gabbai,Haym Benaroya |
Publsiher | : Springer |
Total Pages | : 245 |
Release | : 2019-08-08 |
Genre | : Technology & Engineering |
ISBN | : 9783030261337 |
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This self-contained book provides an introduction to the flow-oscillator modeling of vortex-induced bluff-body oscillations. One of the great challenges in engineering science also happens to be one of engineering design – the modeling, analysis and design of vibrating structures driven by fluid motion. The literature on fluid–structure interaction is vast, and it can be said to comprise a large fraction of all papers published in the mechanical sciences. This book focuses on the vortex-induced oscillations of an immersed body, since, although the importance of the subject has long been known, it is only during the past fifty years that there have been concerted efforts to analytically model the general behavior of the coupling between vortex shedding and structural oscillations. At the same time, experimentalists have been gathering data on such interactions in order to help define the various regimes of behavior. This data is critical to our understanding and to those who develop analytical models, as can be seen in this book. The fundamental bases for the modeling developed in this book are the variational principles of analytical dynamics, in particular Hamilton’s principle and Jourdain’s principle, considered great intellectual achievements on par with Newton’s laws of motion. Variational principles have been applied in numerous disciplines, including dynamics, optics and quantum mechanics. Here, we apply variational principles to the development of a framework for the modeling of flow-oscillator models of vortex-induced oscillations.
Piezoelectric Energy Harvesting
Author | : Alper Erturk,Daniel J. Inman |
Publsiher | : John Wiley & Sons |
Total Pages | : 377 |
Release | : 2011-04-04 |
Genre | : Technology & Engineering |
ISBN | : 9781119991359 |
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The transformation of vibrations into electric energy through the use of piezoelectric devices is an exciting and rapidly developing area of research with a widening range of applications constantly materialising. With Piezoelectric Energy Harvesting, world-leading researchers provide a timely and comprehensive coverage of the electromechanical modelling and applications of piezoelectric energy harvesters. They present principal modelling approaches, synthesizing fundamental material related to mechanical, aerospace, civil, electrical and materials engineering disciplines for vibration-based energy harvesting using piezoelectric transduction. Piezoelectric Energy Harvesting provides the first comprehensive treatment of distributed-parameter electromechanical modelling for piezoelectric energy harvesting with extensive case studies including experimental validations, and is the first book to address modelling of various forms of excitation in piezoelectric energy harvesting, ranging from airflow excitation to moving loads, thus ensuring its relevance to engineers in fields as disparate as aerospace engineering and civil engineering. Coverage includes: Analytical and approximate analytical distributed-parameter electromechanical models with illustrative theoretical case studies as well as extensive experimental validations Several problems of piezoelectric energy harvesting ranging from simple harmonic excitation to random vibrations Details of introducing and modelling piezoelectric coupling for various problems Modelling and exploiting nonlinear dynamics for performance enhancement, supported with experimental verifications Applications ranging from moving load excitation of slender bridges to airflow excitation of aeroelastic sections A review of standard nonlinear energy harvesting circuits with modelling aspects.
Proceedings of the 5th International Symposium on Fluid Structure Interaction Aeroelasticity Flow Induced Vibration and Noise
Author | : M. P. Paidoussis |
Publsiher | : Unknown |
Total Pages | : 764 |
Release | : 2002 |
Genre | : Aeroelasticity |
ISBN | : CORNELL:31924088783851 |
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Proceedings of the 5th International Symposium on Fluid Structure Interactions Aeroelasticity Flow Induced Vibration and Noise
Author | : M. P. Paidoussis |
Publsiher | : Unknown |
Total Pages | : 772 |
Release | : 2002 |
Genre | : Science |
ISBN | : UOM:39015051825258 |
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Vortex Methods
Author | : Kyoji Kamemoto,Michihisa Tsutahara |
Publsiher | : World Scientific |
Total Pages | : 220 |
Release | : 2000-05-11 |
Genre | : Technology & Engineering |
ISBN | : 9789814493284 |
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Vortex methods have been developed and applied to many kinds of flows related to various problems in wide engineering and scientific fields. The purpose of the First International conference on Vortex methods was to provide an opportunity for engineers and scientists to present their achievements, exchange ideas and discuss new developments in mathematical and physical modeling techniques and engineering applications of vortex methods. Contents: Vortex Element Methods, the Most Natural Approach to Flow Simulation — A Review of Methodology with Applications (R I Lewis)A Hybrid Vortex Method (J M R Graham & R H Arkell)Transient Flow Around a Circular Cylinder Near the Moving and Rigid Ground by a Vortex Method (T Kida & T Take)Vortex Method Analysis of Turbulent Flows (P S Bernard et al.)Dynamics of Coherent Structures in a Forced Round Jet (S Izawa et al.)Convergence Study for the Vortex Method with Boundaries (L-A Ying)3D Vortex Methods: Achievements and Challenges (G H Cottet)Development of a Vortex and Heat Elements Method and Its Application to Analysis of Unsteady Heat Transfer Around a Circular Cylinder in a Uniform Flow (K Kamemoto & T Miyasaka)Three-Dimensional Vortex Method Using the Ferguson Spline (M Tsutahara et al.)Numerical Prediction of Rotor Tip-Vortex Roll-Up in Axial Flights by Using a Time-Marching Free-Wake Method (D J Lee)and other papers Readership: Students and researchers in computational fluid mechanics. Keywords:
Petroleum Abstracts
Author | : Anonim |
Publsiher | : Unknown |
Total Pages | : 1730 |
Release | : 1992 |
Genre | : Petroleum |
ISBN | : STANFORD:36105007711661 |
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A Critical Review of the Intrinsic Nature of Vortex Induced Vibrations
![A Critical Review of the Intrinsic Nature of Vortex Induced Vibrations](https://youbookinc.com/wp-content/uploads/2024/06/cover.jpg)
Author | : Turgut Sarpkaya |
Publsiher | : Unknown |
Total Pages | : 126 |
Release | : 2003 |
Genre | : Vibration |
ISBN | : OCLC:53148917 |
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This is a concise and comprehensive review of the progress made during the past two decades on vortex induced vibration (VIV) of mostly circular cylindrical structures subjected to steady uniform flow. The critical elements of the evolution of the ideas, theoretical insights, experimental methods, and numerical models are traced systematically; the strengths and weaknesses of the current state of the understanding of the complex fluid/structure interaction are discussed in some detail. Finally, some suggestions are made for further research on VIV. The organization of the paper is given at the end of the next section.
The Numerical Simulation of Fluid Flow
Author | : Robert Castilla,Anton Vernet |
Publsiher | : Mdpi AG |
Total Pages | : 158 |
Release | : 2022-02-17 |
Genre | : Technology & Engineering |
ISBN | : 3036529314 |
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This book collects the accepted contributions to the Special Issue "The Numerical Simulation of Fluid Flow" in the Energies journal of MDPI. It is focused more on practical applications of numerical codes than in its development. It covers a wide variety of topics, from aeroacoustics to aerodynamics and flow-particles interaction.