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contributor authorAnirban Jana
contributor authorArvind Raman
date accessioned2017-05-09T00:41:43Z
date available2017-05-09T00:41:43Z
date copyrightDecember, 2010
date issued2010
identifier issn1048-9002
identifier otherJVACEK-28910#061001_1.pdf
identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/145052
description abstractThe vibrations of thin, elastic, circular disks such as musical cymbals, hard disk drives, and microscale resonators are significantly influenced by the presence of a surrounding fluid. The energy of disk vibrations is known to dissipate into viscous losses and to radiate away as sound. However, the relative importance of these mechanisms is not well understood. In this paper, we present three-dimensional computations of the fluidic impedance of thin, elastic disks vibrating with small amplitudes under ambient conditions. These computations encompass both macroscale and microscale disks, a wide range of operating frequencies, and different fluidic environments. Viscous fluidic impedances are computed using a finite element model, whereas acoustic fluidic impedances are computed using a boundary element method. For a disk with a given clamping ratio vibrating in a specific mode, the nondimensional viscous impedance depends on the unsteady Reynolds number, while the nondimensional acoustic impedance depends on the ratio of structural to acoustic wavelengths. It is shown that viscous losses dominate the fluid damping of disks in data storage and circular saw applications and of conventional disk microresonators. However, for ultrahigh frequency resonators, acoustic radiation must be taken into account to correctly estimate the overall fluid damping. The computed fluidic impedances are expected to be an important aid in the design of a wide range of disk resonators up to the megahertz regime.
publisherThe American Society of Mechanical Engineers (ASME)
titleVibration Response of Elastic Disks in Surrounding Fluid: Viscous Versus Acoustic Effects
typeJournal Paper
journal volume132
journal issue6
journal titleJournal of Vibration and Acoustics
identifier doi10.1115/1.4001497
journal fristpage61001
identifier eissn1528-8927
keywordsFluids
keywordsAcoustics
keywordsDisks
keywordsImpedance (Electricity) AND Vibration
treeJournal of Vibration and Acoustics:;2010:;volume( 132 ):;issue: 006
contenttypeFulltext


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