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Sound generated by aerodynamic sources near a deformable body, with application to voiced speech

机译:空气动力源在可变形物体附近产生的声音,应用于浊音

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摘要

An analysis is made of sound generation by aerodynamic sources near an acoustically compact body (or compact surface feature on a large boundary) that can deform in an arbitrary manner. It is shown how such problems can be investigated by simple extension of the compact Green's function used in the treatment of compact rigid bodies. It is known that this method can furnish rapid and accurate predictions of sound generated by flows with extensive, non-compact distributions of sources in cases where a numerical treatment requires at best tens or hundreds of hours of CPU time. Illustrative applications are made to study (i) the sound generated by a nominally rigid circular lamina of time-dependent radius held in an irrotational mean stream, and (ii) the production of voiced speech by vorticity interacting with a simple model of the vocal folds. In case (ii), it appears that predictions are represented well by a quasi-static approximation that permits the particular results of this paper and previous investigations to be generalized to arbitrarily configured folds.
机译:分析了在声学紧凑的物体(或大边界上的紧凑的表面特征)附近可以通过任意方式变形的空气动力源产生的声音。它显示了如何通过简单扩展用于紧凑刚体的紧凑格林函数来研究此类问题。众所周知,在数值处理最多需要数十或数百小时的CPU时间的情况下,这种方法可以快速,准确地预测由流量产生的声音的广泛,非紧凑分布。进行了示例性研究来研究(i)非旋转平均流中保持的,随时间变化的半径的名义上刚性的圆形薄片所产生的声音,以及(ii)通过涡度与人声折痕的简单模型相互作用产生的语音。在情况(ii)中,似乎可以通过准静态近似很好地表示预测,该准静态近似允许将本文的特定结果和以前的研究推广到任意配置的折叠。

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