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Also, the sound power generated by an arbitrary harmonic force is calculated from self and mutual radiation powers.
The dynamic response of a detached single CMUT cell and an array of CMUT cells is predicted and analyzed for the effect of mutual radiation.
Mutual radiation resistance and reactance coefficients exhibit an expected oscillatory decay as functions ofkaand the frequency of oscillation is dependent on the spacing parameterd/a.
In this study, an analytical solution for the self- and mutual radiation resistances is obtained in the form of the power series of the non-dimensional acoustic wavenumber.
The method is based on a series expansion that derives the mutual radiation factors by means of summation of the contributions to the radiative thermal exchange given by the multi-reflection process.
A few numerical examples are given simply to verify the solution and elucidate the reliance of the self- and mutual radiation resistances on the acoustic wavenumber and the plate aspect ratio.
Similar(52)
Numerical results are presented to illustrate the spectral characteristics of the mutual-radiation resistances and the corresponding impact on the radiated sound power.
When separation is along the diagonal direction at 45 °C, mutual-radiation impedance is minimized.
In this paper, the characteristics of the mutual-radiation resistances are investigated of a simply supported rectangular plate.
The presented integral solution agrees with that obtained for the mutual-radiation impedance of a uniformly vibrating rectangular piston by the use of the classical approach.
The normalized self- and mutual-radiation impedances for a square piston in a rigid infinite baffle are formulated as quadruple surface integrals by using geometric relations and the impedances are evaluated numerically.
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