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Generation and propagation of elastic waves on a pipe by open-shell transducers Daeseung Kim and Jin Oh Kim*
The Journal of Mechanical Science and Technology, vol. 25, no. 10, pp.2475-2484, 2011
Abstract : This paper deals with the generation and propagation of elastic waves on an empty pipe and on a water-filled pipe by open-shell transducers
theoretically, numerically, and experimentally. The dispersion equations relating wave speed to frequency were derived by using
the cylindrical shell theory. The theoretical analysis was verified by comparing the calculated dispersion curves with the frequencywavenumber
spectrums obtained from the finite-element analysis and by comparing the calculated wave speeds with the results measured
by using open-shell transducers as transmitters and receivers. The finite-element analysis revealed that the waves of only evennumbered
wave modes were generated by the open-shell transducers symmetrically located along the circumference of the pipe and that
the axisymmetric wave propagates faster than non-axisymmetric waves.
Keyword :
Wave propagation; Open-shell transducer; Finite element analysis; Dispersion curve; Wave speed; Frequency; Wavenumber
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