DocumentCode :
866527
Title :
A lumped-circuit model for the radiation impedance of a circular piston in a rigid baffle
Author :
Bozkurt, Ayhan
Author_Institution :
Electron. Eng. Program of Sabanci Univ., Istanbul
Volume :
55
Issue :
9
fYear :
2008
fDate :
9/1/2008 12:00:00 AM
Firstpage :
2046
Lastpage :
2052
Abstract :
The radiation impedance of a piston transducer mounted in a rigid baffle has been widely addressed in the literature. The real and imaginary parts of the impedance are described by the first order Bessel and Struve functions, respectively. Although there are power series expansions for both functions, the analytic formulation of a lumped circuit is not trivial. In this paper, we present an empirical approach to the derivation of a lumped-circuit model for the radiation impedance expression, based on observations on the near-field behavior of stored kinetic and elastic energy. The field analysis is carried out using a finite element method model of the piston and surrounding fluid medium. We show that fluctuations in the real and imaginary components of the impedance can be modeled by series and shunt tank circuits, each of which shape a certain section of the impedance curve. Because the model is composed of lumped-circuit elements, it can be used in circuit simulators. Consequently, the proposed model is useful for the analysis of transducer front-end circuits.
Keywords :
Bessel functions; acoustic impedance; finite element analysis; pistons; ultrasonic transducers; underwater sound; circuit simulators; circular piston; finite element method model; first order Bessel function; first order Struve function; fluid medium; impedance curve; lumped-circuit model; near-field behavior; piston transducer; power series expansion; radiation impedance expression; rigid baffle; shunt tank circuits; stored energy; transducer front-end circuits; Acoustic transducers; Circuit simulation; Councils; Electronic mail; Equivalent circuits; Frequency; Pistons; Resonance; Solids; Surface impedance; Acoustics; Computer Simulation; Computer-Aided Design; Electronics; Equipment Design; Equipment Failure Analysis; Models, Theoretical; Transducers;
fLanguage :
English
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-3010
Type :
jour
DOI :
10.1109/TUFFC.896
Filename :
4626933
Link To Document :
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