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A critical review of the intrinsic nature of vortex-induced vibrations
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A 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 is presented in this article.About:
This article is published in Journal of Fluids and Structures.The article was published on 2004-05-01. It has received 1368 citations till now.read more
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An overview of modeling and experiments of vortex-induced vibration of circular cylinders
Rene D. Gabbai,Haym Benaroya +1 more
TL;DR: A review of mathematical models used to investigate vortex-induced vibration (VIV) of circular cylinders is given in this article, with a focus on single-degree-of-freedom (SFOF) models.
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Circular cylinder wakes and vortex-induced vibrations
TL;DR: In this paper, a selective review of recent research on vortex-induced vibrations of isolated circular cylinders and the flow and vibration of circular cylinders in a tandem arrangement is presented, a common thread being that the topics raised are of particular interest to the author.
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VIVACE (Vortex Induced Vibration Aquatic Clean Energy): A New Concept in Generation of Clean and Renewable Energy From Fluid Flow
TL;DR: The vortex induced vibration aquatic clean energy (VIVACE) converter as discussed by the authors is based on the idea of maximizing rather than spoiling vortex shedding and exploiting rather than suppressing VIV.
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Curvilinear immersed boundary method for simulating fluid structure interaction with complex 3D rigid bodies
TL;DR: Numerical experiments for fluid structure interaction (FSI) problems involving complex 3D rigid bodies undergoing large structural displacements suggest that both the properties of the structure and local flow conditions can play an important role in determining the stability of the FSI algorithm.
References
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Book
An Introduction to Fluid Dynamics
TL;DR: The dynamique des : fluides Reference Record created on 2005-11-18 is updated on 2016-08-08 and shows improvements in the quality of the data over the past decade.
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An Introduction to Fluid Dynamics. By G. K. Batchelor. Pp. 615. 75s. (Cambridge.)
TL;DR: In this paper, the Navier-Stokes equation is derived for an inviscid fluid, and a finite difference method is proposed to solve the Euler's equations for a fluid flow in 3D space.
Book
Probability theory
TL;DR: These notes cover the basic definitions of discrete probability theory, and then present some results including Bayes' rule, inclusion-exclusion formula, Chebyshev's inequality, and the weak law of large numbers.
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