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首页> 外文期刊>The Journal of the Acoustical Society of America >Transverse pressure distributions in a simple model ear canal occluded by a hearing aid test fixture
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Transverse pressure distributions in a simple model ear canal occluded by a hearing aid test fixture

机译:助听器测试夹具遮挡的简单模型耳道中的横向压力分布

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摘要

The sound field in a model ear canal with a hearing aid test fixture has been investigated experimentally and theoretically. Large transverse variations of sound pressure level, as much as 20 dB at 8 kHz, were found across the inner face of the hearing aid. Variations are greatest near the outlet port of the receiver and the vent port. Deeper into the canal, the transverse variations are less significant and, at depths greater than 4 mm, only a longitudinal variation remains. The model canal was cylindrical, 7.5 mm diameter, and terminated with a Zwislocki coupler to represent absorption by the human middle ear. The outer end of the canal was driven by the receiver in the hearing aid test fixture, with the acoustic output entering the canal through a I turn port. The hearing aid was provided with a 20 mm-long vent, either I or 2 mm in diameter. The sound field inside the canal was measured using a specially designed 0.2-mm-diam probe microphone [Daigle and Stinson, J. Acoust. Soc. Am. 116, 2618 (2004)]. In parallel, calculations of the interior sound field were performed using a boundary, element technique and found to agree well with measurements. (c) 2007 Acoustical Society of America.
机译:已通过实验和理论研究了带有助听器测试装置的模型耳道中的声场。在助听器的整个内表面发现了较大的声压水平横向变化,在8 kHz时高达20 dB。接收器的出口和通风口附近的变化最大。在运河的更深处,横向变化较小,而在大于4 mm的深度处,仅保留纵向变化。模型管是圆柱形的,直径为7.5 mm,并以Zwislocki耦合器终止,代表了人类中耳的吸收。耳道的外端由助听器测试装置中的接收器驱动,声音输出通过I型转向端口进入耳道。助听器配有20毫米长的通风孔,直径为1毫米或2毫米。使用专门设计的0.2毫米直径的探头麦克风[Daigle and Stinson,J. Acoust。 Soc。上午。 116,2618(2004)]。同时,内部声场的计算使用边界元技术进行,发现与测量结果非常吻合。 (c)2007年美国声学学会。

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