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Analytical model for the airborne sound pressure waveform radiated when an offshore steel pipe pile is driven with an impact hammer

机译:撞击锤驱动海上钢管桩时辐射空气声压波形的分析模型

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An analytical model has been developed for the airborne sound pressure waveform radiated when an offshore steel pipe pile is struck by a short hammer. The model is based on the coupled equations of motion for axial and radial vibration of a thin shell, and yields frequency-dependent phase velocity and attenuation of these vibrations. A harmonic solution is obtained for the radiated sound pressure, using Junger & Feit's "Transform formulation of the pressure field of cylindrical radiators". The model is applied to a measurement of a 10-tonne hammer with cushion driving a pile 91 cm in diameter and 38 m long, in water 17 m deep. The height of the pile face above the water surface is estimated to have decreased from approximately 15 to 3 m during its driving. SPL (Leq) is examined at the measurement range (15 m) and microphone height (1.5 m). The present model predicts SPL would have ranged between 104 and 109 dB re 20 μPa as the pile face descended. The measured SPL data had an average of 103 dB and a maximum of 111 dB re 20 μPa. Possible reasons for the smaller spread of the model predictions are discussed.
机译:当近岸钢管桩被短锤击撞击时,已经为空气传声波波形开发了一个分析模型。该模型基于薄壳的轴向和径向振动的耦合方程,并产生频率依赖的相速度和这些振动的衰减。获得辐射声压的谐波溶液,使用Querger&Feir的“圆柱辐射器的压力场的变换制剂”。该模型应用于10吨锤的测量,垫子直径为91厘米,长38米,在水17米深处。估计水面上方的桩面的高度在其驱动期间从大约15到3米下降。在测量范围(15米)和麦克风高度(1.5米)上检查SPL(LEQ)。当桩面下降时,本模型预测SPL在104和109dB的RE20μPa之间。测量的SPL数据的平均值为103dB,最大为111dB Re20μPa。讨论了模型预测较小传播的可能原因。

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