Title :
Reconstructing the Acoustic Pressure Field Using Spheroidal Wave Functions
Author :
Yide, Zhou ; JianBo, Wu ; Ruiliang, Yang ; Xiaowei, Fan
Author_Institution :
Sch. of Energy & Environ. Eng., Zhongyuan Inst. of Technol.
Abstract :
A new formulation based on a prolate spheroidal coordinate was proposed to describe acoustic pressure in the acoustic field. The radiated acoustic pressures are obtained by means of an expansion of independent functions based on the prolate spheroidal coordinate system. Then the acoustic pressure in the field can be reconstructed by using some measured acoustic pressure signals in the field. The independent function of the traditional HELS is spherical function, which is most suitable for reconstructing pressures radiated a spherical source or sources with a characteristic aspect ratio x:y:z close 1:1:1. While the new method proposed in this paper is suitable for the acoustic sources with a characteristic aspect ratio y:z close 1:1 and x at random, which extends the appropriate application domain of traditional HELS largely. It uses a finite cylinder as an example in this paper, which shows that the new method is feasible and efficiently
Keywords :
Helmholtz equations; acoustic field; acoustic intensity; least squares approximations; wave functions; HELS; acoustic field; acoustic source; prolate spheroidal coordinate system; radiated acoustic pressure; spheroidal wave function; Acoustic measurements; Acoustic waves; Acoustical engineering; Boundary element methods; Holography; Inverse problems; Noise reduction; Pressure measurement; Shape measurement; Wave functions;
Conference_Titel :
Direct and Inverse Problems of Electromagnetic and Acoustic Wave Theory, Proceedings of XIth International Seminar/Workshop on
Conference_Location :
Tbilisi, Georgia
Print_ISBN :
966-02-3873-8
DOI :
10.1109/DIPED.2006.314280