Design of Directional Structural-Acoustic Coupled Radiator in Wave Number Domain

파수 영역에서 지향성 구조-음향 연성 방사체 설계

  • 서희선 (국방과학연구소 2체계 수중음향센서연구실) ;
  • 김양한 (한국과학기술원 기계공학과)
  • Published : 2005.11.01

Abstract

A design procedure using spatial Fourier transform is presented for a structural-acoustic coupled radiator that can emit sound in the desired direction with high power and low side lobe level. The design procedure consists of three steps. Firstly, the structural-acoustic coupled radiator is chosen to obtain strong coupling between structural vibration and acoustic pressure. The radiator is composed by two spaces which are separated by a wall. Spaces can be categorized as reverberant finite space and unbounded semi-infinite space, and the wall are composed of two plates and an opening. The velocities on the wall are predicted. Secondly, directivity and energy distribution of radiator are predicted in wave number domain using spatial Fourier transform. Finally, optimal design variables are calculated using a dual optimal algorithm. Its computational example is presented including the directivity and resulting pressure distribution using proposed procedure.

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