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首页> 外文期刊>Advances in Acoustics and Vibration >High-Frequency Underwater Acoustic Propagation in a Port Modeled as a Three-Dimensional Duct Closed at One End Using the Method of Images
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High-Frequency Underwater Acoustic Propagation in a Port Modeled as a Three-Dimensional Duct Closed at One End Using the Method of Images

机译:使用图像方法在一端封闭的三维风道中建模的端口中的高频水下声传播

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A computer-efficient model for underwater acoustic propagation in a shallow, three-dimensional rectangular duct closed at one end has been developed using the method of images. The duct simulates a turning basin located in a port, surrounded with concrete walls, and filled with sea water. The channel bottom is composed of silt. The modeled impulse response is compared with the impulse response measured between 15 kHz and 33 kHz. Despite small sensor-position inaccuracies and an approximated duct geometry, the impulse response can be modeled with a relative echo magnitude error of 1.62 dB at worst and a relative echo location error varying between 0% and 4% when averaged across multiple measurements and sensor locations. This is a sufficient level of accuracy for the simulation of an acoustic communication system operating in the same frequency band and in shallow waters, as time fluctuations in echo magnitude commonly reach 10 dB in this type of environment.
机译:使用图像方法,开发了一种计算机有效的模型,用于在一端封闭的浅三维三维矩形管道中进行水下声传播。该风管模拟了一个位于港口的转向盆,周围环绕着混凝土墙,并充满了海水。通道底部由淤泥组成。将模型化的脉冲响应与在15 kHz至33 kHz之间测得的脉冲响应进行比较。尽管传感器位置误差较小且导管的几何形状近似,但在多次测量和传感器位置取平均值时,脉冲响应可以建模为相对回波幅度误差为最差的1.62 dB,相对回波位置误差在0%和4%之间变化。这对于模拟在相同频带和浅水中工作的声通信系统而言,具有足够的精度,因为在这种类型的环境中,回波幅度的时间波动通常达到10dB。

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