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首页> 外文期刊>The Journal of the Acoustical Society of America >Finite element modeling of reverberation and transmission loss in shallow water waveguides with rough boundaries
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Finite element modeling of reverberation and transmission loss in shallow water waveguides with rough boundaries

机译:具有粗糙边界的浅水波导中混响和传输损耗的有限元建模

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A finite element model for the reverberation and propagation in a shallow water waveguide with a sandy bottom was calculated for five different environments at a center frequency of 250 Hz. The various environments included a rough water/sediment interface, a rough air/water interface, roughness at both interfaces and downward and upward refracting sound speed profiles with roughness at both interfaces. When compared to other models of reverberation such as ray theory, coupled modes, and parabolic equations, finite elements predicted higher levels of reverberation. At early times, this is due to the fathometer return, energy that is normally incident on the boundaries at zero range. At later times, the increased reverberation was due to high angle scattering paths between the two interfaces. Differences in reverberation levels among the environments indicated that scattered energy from the air/water interface is transmitted into the bottom at steep angles. This led to a large decrease in reverberation for a rough air/water interface relative to a rough water/sediment interface. Sound speed profile effects on reverberation were minimal at this frequency range. Calculations of the scintillation index of the different environments indicated that most of the reverberation was relatively Rayleigh-like with heavier tailed distributions at longer ranges.
机译:针对中心频率为250 Hz的五个不同环境,计算出了一个浅水波导和沙质底部的混响和传播的有限元模型。各种环境包括粗糙的水/沉积物界面,粗糙的空气/水界面,两个界面处的粗糙度以及在两个界面处均具有粗糙度的向下和向上折射声速曲线。与其他混响模型(如射线理论,耦合模式和抛物线方程)相比,有限元预测的混响水平更高。在早期,这是由于归零计返回,能量通常以零范围入射在边界上。后来,混响的增加是由于两个界面之间的高角度散射路径所致。环境之间混响水平的差异表明,来自空气/水界面的散射能量以陡峭的角度传输到底部。相对于粗糙的水/沉积物界面,这导致粗糙的空气/水界面的混响大大降低。在此频率范围内,声速曲线对混响的影响最小。对不同环境的闪烁指数的计算表明,大多数混响是相对瑞利样的,在较长的距离上具有较重的尾部分布。

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