Department of Mechanical Engineering, University of Bath, Bath BA2 7AY, England.
J Acoust Soc Am. 2010 Oct;128(4):1679-84. doi: 10.1121/1.3478852.
The information content of a spinning sound field is analyzed using a combination of exact and asymptotic results, in order to set limits on how accurately source identification can be carried out. Using a transformation of the circular source to an exactly equivalent set of line source modes, given by Chebyshev polynomials, it is found that the line source modes of order greater than the source wavenumber generate exponentially small fields. Asymptotic analysis shows that the remaining, lower order, modes radiate efficiently only into a region around the source plane, with this region shrinking as the mode order is increased. The results explain the ill-conditioning of source identification methods; the successful use of low order models in active noise control; and the low radiation efficiency of subsonic jets.
采用精确解和渐近解的组合分析了旋转声场的信息内容,以便对声源识别的精确程度进行限制。通过将圆形声源转换为由切比雪夫多项式给出的完全等效的线源模式,可以发现,阶数大于声源波数的线源模式会产生指数级小的场。渐近分析表明,其余较低阶模式仅有效地辐射到源平面周围的区域,并且随着模式阶数的增加,该区域会缩小。这些结果解释了声源识别方法的病态性;在有源噪声控制中成功使用低阶模型;以及亚音速射流的低辐射效率。