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基于声压测量重建声学量的方法。

Methods for reconstructing acoustic quantities based on acoustic pressure measurements.

作者信息

Wu Sean F

机构信息

Department of Mechanical Engineering, Wayne State University, Detroit, Michigan 48202, USA.

出版信息

J Acoust Soc Am. 2008 Nov;124(5):2680-97. doi: 10.1121/1.2977731.

Abstract

This paper presents an overview of the acoustic imaging methods developed over the past three decades that enable one to reconstruct all acoustic quantities based on the acoustic pressure measurements taken around a target source at close distances. One such method that has received the most attention is known as near-field acoustical holography (NAH). The original NAH relies on Fourier transforms that are suitable for a surface containing a level of constant coordinate in a source-free region. Other methods are developed to reconstruct the acoustic quantities in three-dimensional space and on an arbitrary three-dimensional source surface. Note that there is a fine difference between Fourier transform based NAH and other methods that is largely overlooked. The former can offer a wave number spectrum, thus enabling visualization of various structural waves of different wavelengths that travel on the surface of a structure; the latter cannot provide such information, which is critical to acquire an in-depth understanding of the interrelationships between structural vibrations and sound radiation. All these methods are discussed in this paper, their advantages and limitations are compared, and the need for further development to analyze the root causes of noise and vibration problems is discussed.

摘要

本文概述了过去三十年中开发的声学成像方法,这些方法能够基于在近距离目标源周围进行的声压测量来重建所有声学量。其中一种备受关注的方法称为近场声全息(NAH)。原始的NAH依赖于傅里叶变换,该变换适用于无源区域中包含恒定坐标水平的表面。还开发了其他方法来在三维空间和任意三维源表面上重建声学量。请注意,基于傅里叶变换的NAH与其他方法之间存在细微差别,而这一点在很大程度上被忽视了。前者可以提供波数谱,从而能够可视化在结构表面传播的不同波长的各种结构波;后者无法提供此类信息,而这些信息对于深入理解结构振动与声辐射之间的相互关系至关重要。本文将讨论所有这些方法,比较它们的优缺点,并讨论进一步发展以分析噪声和振动问题根源的必要性。

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