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請用此 Handle URI 來引用此文件: http://scholars.ntou.edu.tw/handle/123456789/17289
標題: A Time-Shifting Algorithm for Alleviating Convergence Difficulties at Interior Acoustic Resonance Frequencies
作者: Kao, Jui Hsiang 
關鍵字: time-shifting boundary element method;time domain;eigenfrequency;resonance frequency;relaxation
公開日期: 1-三月-2021
出版社: MDPI
卷: 11
期: 6
來源出版物: APPLIED SCIENCES-BASEL
摘要: 
This paper proposes a time-shifting boundary element method in the time domain to calculate the radiating pressures of an arbitrary object pulsating at eigenfrequencies of the interior (i.e., interior resonance frequencies). In this paper, the frequency shifting is time-step-dependent and could be viewed as an iterative, or relaxation, technique for the solution of the problem. The proposed method avoids numerical problems due to the internal resonance frequency by initializing the iteration with each scaled frequency. The scaled frequency is approximately equal to the true frequency at the last iterating time step. A sphere pulsating at the eigenfrequency in an infinite acoustic domain was calculated first; the result was compared with the analytical solution, and they were in good agreement. Moreover, two arbitrary-shaped radiators were taken as study cases to predict the radiating pressures at the interior resonance frequencies, and robustly convergent results were obtained. Finally, the accuracy of the proposed method was tested using a problem with a known solution. A point source was placed inside the object to compute the surface velocities; the computed surface pressures were identical to the pressures computed using the point source.
URI: http://scholars.ntou.edu.tw/handle/123456789/17289
DOI: 10.3390/app11062701
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