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Titlebook: Advances in Critical Flow Dynamics Involving Moving/Deformable Structures with Design Applications; Proceedings of the I Marianna Braza,Ker

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期刊全称Advances in Critical Flow Dynamics Involving Moving/Deformable Structures with Design Applications
期刊简称Proceedings of the I
影响因子2023Marianna Braza,Kerry Hourigan,Michael Triantafyllo
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发行地址Gives new insights into turbulent flow interacting with actively deformable structures.Presents advanced theoretical approaches, as well as experimental and simulation methods.Shows how to improve aer
学科分类Notes on Numerical Fluid Mechanics and Multidisciplinary Design
图书封面Titlebook: Advances in Critical Flow Dynamics Involving Moving/Deformable Structures with Design Applications; Proceedings of the I Marianna Braza,Ker
影响因子.This book reports on the latest knowledge concerning critical phenomena arising in fluid-structure interaction due to movement and/or deformation of bodies. The focus of the book is on reporting progress in understanding turbulence and flow control to improve aerodynamic / hydrodynamic performance by reducing drag, increasing lift or thrust and reducing noise under critical conditions that may result in massive separation, strong vortex dynamics, amplification of harmful instabilities (flutter, buffet), and flow -induced vibrations. Theory together with large-scale simulations and experiments have revealed new features of turbulent flow in the boundary layer over bodies and in thin shear layers immediately downstream of separation. New insights into turbulent flow interacting with actively deformable structures, leading to new ways of adapting and controlling the body shape and vibrations to respond to these critical conditions, are investigated. The book covers new featuresof turbulent flows in boundary layers over wings and in shear layers immediately downstream: studies of natural and artificially generated fluctuations; reduction of noise and drag; and electromechanical conver
Pindex Conference proceedings 2021
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https://doi.org/10.1007/978-3-030-55594-8Critical Flow Dynamics; Amplification of Harmful Instabilities; Fluid-structure Interaction Models; Flo
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Deborah C. Jaworski,Glen R. Needham by means of numerical simulation, at Reynolds number 3900, based on the cylinder diameter and current velocity. The flow exhibits pronounced fluctuations distributed along the span in all studied cases. Qualitatively, it is characterized by spanwise undulations of the shear layers separating from t
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https://doi.org/10.1007/978-3-662-06203-6ration (VIV) response at different angles of attack. This airfoil is considered, since it is one of the airfoils used in Vertical-Axis Wind Turbine (VAWT) designs. Based on the experimental results of the current work, for smaller angles of attack, ., no oscillation was observed. Oscillations starte
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Calving Management and Newborn Calf Care stream. The cylinder oscillates with a frequency in the in-line direction equal to twice the transverse oscillation frequency, thus following a figure-eight trajectory; for a flow from left to right, the figure-eight is traversed in either a counter-clockwise or a clockwise direction in the upper h
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B. Hoffmann,I. L. Mason,J. Schmidtid or transverse to a free stream at a Keulegan–Carpenter number of 0.5, a Stokes number of 200 and varying ratios of the free-stream velocity to the maximum oscillation velocity. The unsteady force in the direction of motion obtained from the simulations in still fluid is in excellent agreement wit
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