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首页> 外文期刊>The Journal of the Acoustical Society of America >Low-dimensional models of the glottal flow incorporating viscous-inviscid interaction
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Low-dimensional models of the glottal flow incorporating viscous-inviscid interaction

机译:包含粘性-非粘性相互作用的声门流的低维模型

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摘要

The behavior of glottal flow can, to a large extent, be characterized by development and separation of the boundary layer. The point of flow separation is known to vary during the phonatory cycle due to change in channel configuration. To take the movable nature of the separation point into account, the boundary-layer equation is solved numerically, and the values of the characteristic quantities are determined as well as the point of separation. Development of the boundary layer in general reduces the effective size of the channel, and, therefore, increases the core flow velocity, which, in turn provides the boundary condition of the boundary-layer equation. The interaction between the viscous (boundary layer) and inviscid (core flow) parts of the glottal flow is, therefore, strongly indicated. To apply this viscous-inviscid interaction, the expression of the core flow is derived for a two-dimensional flow field, and is solved jointly with the boundary-layer equation. Numerical results are shown to examine the effect of the Reynolds number and glottal configuration, with special emphasis on the comparison of flow models developed for one- and two-dimensional flow fields. Numerical results are also quantitatively compared with data obtained from flow measurement experiments.
机译:声门流动的行为在很大程度上可以通过边界层的发展和分离来表征。由于通道配置的变化,已知流分离点在语音周期中会发生变化。为了考虑分离点的可移动性质,对边界层方程进行数值求解,并确定特征量的值以及分离点。边界层的形成通常减小了通道的有效尺寸,因此增加了岩心流速,这反过来又提供了边界层方程的边界条件。因此,强烈指出了声门流动的粘性(边界层)和不粘稠(核心流动)部分之间的相互作用。为了应用这种粘性-无粘相互作用,导出了二维流场的核心流表达式,并与边界层方程共同求解。数值结果显示了检查雷诺数和声门构型的影响,并特别强调了针对一维和二维流场开发的流模型的比较。还将数值结果与从流量测量实验获得的数据进行定量比较。

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