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Wideband measurement of the acoustic impedance of tubular objects

机译:管状物体声阻抗的宽带测量

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摘要

A method is discussed for measuring the acoustic impedance of tubular objects that gives accurate results for a wide range of frequencies. The apparatus that is employed is similar to that used in many previously developed methods; it consists of a cylindrical measurement duct fitted with several microphones, of which two are active in each measurement session, and a driver at one of its ends. The object under study is fitted at the other end. The impedance of the object is determined from the microphone signals obtained during excitation of the air inside the 1 duct by the driver, and from three coefficients that are pre-determined using four calibration measurements with closed cylindrical tubes. The calibration procedure is based on the simple mathematical relationships between the impedances of the calibration tubes, and does not require knowledge of the propagation constant. Measurements with a cylindrical tube yield an estimate of the attenuation constant for plane waves, which is found to differ from the theoretical prediction by less than 1.4% in the frequency range 1 kHz-20 kHz. Impedance measurements of objects with abrupt changes in diameter are found to be in good agreement with multimodal theory.
机译:讨论了一种用于测量管状物体的声阻抗的方法,该方法可以在很宽的频率范围内给出准确的结果。使用的设备与许多以前开发的方法中使用的设备相似;它由一个装有多个麦克风的圆柱形测量导管组成,每个测量会话中有两个处于活动状态,并且在其一端有一个驱动器。研究对象安装在另一端。物体的阻抗取决于驾驶员在激励1通道内的空气过程中获得的麦克风信号,以及由三个系数(这些系数是使用四个带有封闭圆柱管的校准测量值预先确定的)确定的。校准过程基于校准管阻抗之间的简单数学关系,并且不需要了解传播常数。用圆柱管进行测量可得出平面波衰减常数的估算值,该值在1 kHz-20 kHz的频率范围内与理论预测值相差不到1.4%。发现直径突然变化的对象的阻抗测量与多峰理论非常吻合。

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