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首页> 外文期刊>The Journal of the Acoustical Society of America >Time-domain simulation of flute-like instruments: Comparison of jet-drive and discrete-vortex models
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Time-domain simulation of flute-like instruments: Comparison of jet-drive and discrete-vortex models

机译:类长笛乐器的时域仿真:喷射驱动模型和离散涡模型的比较

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摘要

This paper presents two models of sound production in flute-like instruments that allow time-domain simulations. The models are based on different descriptions of the jet flow within the window of the instrument. The jet-drive model depicts the jet by its transverse perturbation that interacts with the labium to produce sound. The discrete-vortex model depicts the jet as two independent shear layers along which vortices are convected and interact with the acoustic field within the window. The limit of validity between both models is usually discussed according to the aspect ratio of the jet W/h, with W the window length and h the flue channel height. The present simulations, compared with experimental data gathered on a recorder, allow to extend the aspect ratio criterion to the notion of dynamic aspect ratio defined as λ/h where k is the hydrodynamic wavelength that now accounts for geometrical properties, such as W/h, as well as for dynamic properties, such as the Strouhal number. The two models are found to be applicable over neighboring values of geometry and blowing pressure.
机译:本文介绍了两个类似长笛的乐器中的声音产生模型,它们可以进行时域仿真。这些模型基于仪器窗口内射流的不同描述。喷气驱动模型通过其横向扰动来描述喷气,该横向扰动与阴唇相互作用以产生声音。离散涡流模型将射流描述为两个独立的剪切层,沿着该对流层,涡流被对流并与窗口内的声场相互作用。通常根据射流的长宽比W / h讨论两个模型之间的有效性极限,其中W为窗口长度,h为烟道高度。与在记录器上收集的实验数据相比,本模拟允许将纵横比标准扩展到定义为λ/ h的动态纵横比的概念,其中k是现在考虑几何特性(例如W / h)的流体动力学波长,以及动态属性(例如Strouhal数)。发现这两个模型适用于几何形状和吹塑压力的相邻值。

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