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首页> 外文期刊>Acoustical science and technology >Numerical production of /s/-like sound as Helmholtz resonance in the turbulence-induced pressure field inside a two-dimensional oral front cavity
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Numerical production of /s/-like sound as Helmholtz resonance in the turbulence-induced pressure field inside a two-dimensional oral front cavity

机译:在二维口腔前腔内的湍流引起的压力场中的数值生产/ s / -like声像在湍流诱导的压力场中的亥姆霍兹共振

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摘要

A numerical production of /s/-like sound is dealt with by means of computational fluid dynamics in a two-dimensional model of oral front cavity. The basic hypothesis is that the target sound is the outcome of the lowest or first-mode resonance to the pressure field inside the front cavity, whose resonance frequency is in the range 5~8 kHz. The model domain is composed of a small semi-closed area representing the front cavity, the upstream half-space, the downstream half-space and two channels that connect the upstream/downstream half-spaces to the cavity. Computation was carried out with the method of direct numerical simulation on the two-dimensional Navier-Stokes equations. The pressure wave emitted into the downstream half-space has a continuous spectrum with a single spectral peak around the assumed resonance frequency. The spatial/temporal characteristics of the turbulence and pressure fields are studied in relation to the so-called quadrupole field.
机译:通过在口腔前腔的二维模型中通过计算流体动力来处理/ s / -like声音的数值生产。基本假设是目标声音是前腔内的压力场的最低或第一模式共振的结果,其共振频率在5〜8 kHz范围内。模型域由表示前腔,上游半空间,下游半空间和两个通道连接到腔的上游半空间的小半闭区域。使用二维Navier-Stokes方程的直接数值模拟方法进行计算。发射到下游半空间中的压力波具有具有围绕假定谐振频率的单光谱峰的连续频谱。研究了湍流和压力场的空间/时间特性与所谓的四极杆场相关。

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