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In our novel method, the acoustic source is activated with two tone-bursts (2.2 and 4.4 MHz), with specially designed polarization of the individual tone-burst.
By the proposed method, the acoustic radiation from the moving vibrating structure can be calculated easily with the same implementation process as the conventional wave superposition approach performed in the stationary acoustic field.
With the above method, the acoustic intensity vectors and the acoustic energy streamlines are visualized to investigate the propagation feature of the noise radiated from the monopole and dipole point sources and the rotor in subsonic rotation.
In the proposed method, the acoustic transfer paths from loudspeakers to ears are approximated with CAPZ models, then the crosstalk cancellation filter is designed based on the CAPZ transfer functions.
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The comparison of the proposed method with the acoustic method shows the former's higher sensitivity.
In model-driven methods, the acoustic similarity between two phones can be achieved from the theoretical distance between the corresponding acoustic models.
Meanwhile, the damping characteristics of the Ni Mn Ga composite are studied through the axial loading unloading method and the acoustic emission signals method.
The combination of the semi-analytical method for the structure and the analytical differentiation method for the acoustic cavity yields a very practical approach for the shape design sensitivity formulation.
Thus, we examined the evaluation and modeling method for the acoustic transmission characteristics of a sound transmission prediction method.
The ultrasonic shear wave reflection method measures the acoustic property of the near surface material only.
In this paper, a meshless method for the acoustic eigenfrequencies using radial basis function (RBF) is proposed.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com