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首页> 外文期刊>IEEE Journal of Oceanic Engineering >Numerical Modeling of Radiated Sound for Impact Pile Driving in Offshore Environments
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Numerical Modeling of Radiated Sound for Impact Pile Driving in Offshore Environments

机译:海洋环境下冲击桩打桩辐射声的数值模拟

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摘要

In this paper, a coupled near-to-far-field numerical model for predicting the acoustic emissions from impact pile driving in offshore environments is presented. The near-field region of the pile is modeled via an axisymmetric finite element method (FEM) model which is solved in the frequency domain. The calculated radiated field at a chosen radial distance in the FEM model is then expanded into a series of local normal modes (NMs) which are propagated into the far field, to predict the piling sound characteristics, such as the peak pressure and sound exposure levels, at large ranges. Numerical examples are presented for the same pile configuration adopted for the COMPILE 2014 benchmark workshop on predicting offshore pile-driving noise, and these results are compared in both the near and far fields to those of several other research groups who presented results at the workshop. Results from the present FEM-NM near-to-far-field model are shown to be generally in good agreement with those results from the other research groups. In the near field, similar signal waveforms are predicted by the various models which employ the same pile wall boundary conditions. In the far field, the selected models showed a variation of ±1 dB at 1.5 km, and ±4 dB at 50 km for the predicted peak pressure levels, and a variation of ±1.5 dB over the 50-km range for the predicted sound exposure levels.
机译:在本文中,提出了一种用于预测近海环境中冲击桩打入声发射的近-远场耦合数值模型。桩的近场区域通过轴对称有限元方法(FEM)模型进行建模,该模型在频域中求解。然后将在FEM模型中选定的径向距离处计算出的辐射场扩展为一系列局部法线(NMs),并传播到远场中,以预测打桩的声音特性,例如峰值压力和声音暴露水平,范围很大。给出了数值示例,这些示例均采用COMPILE 2014基准研讨会上用于预测海上打桩噪声的相同桩配置,并将这些结果在近场和远场与在研讨会上介绍结果的其他几个研究小组的结果进行了比较。从目前的FEM-NM近场模型得出的结果通常与其他研究小组的结果一致。在近场中,采用相同桩壁边界条件的各种模型可以预测相似的信号波形。在远场中,选定的模型在1.5 km处的预测峰值压力水平出现±1 dB的变化,在50 km处表现出±4 dB的变化,在50 km范围内对于预测的声音表现出±1.5 dB的变化暴露水平。

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