首页> 外文期刊>Journal of Marine Science and Engineering >Structure-Borne Wave Radiation by Impact and Vibratory Piling in Offshore Installations: From Sound Prediction to Auditory Damage ?
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Structure-Borne Wave Radiation by Impact and Vibratory Piling in Offshore Installations: From Sound Prediction to Auditory Damage ?

机译:海上设施中撞击和振动打桩产生的结构波辐射:从声音预测到听觉损伤?

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Anthropogenic noise emission in the marine environment is a key issue nowadays and has drawn the attention of regulatory bodies in various nations. In particular, the noise generated during the installation of foundation piles for the offshore wind industry is considered to be harmful for aquatic species. A reliable prediction of the underwater noise during the installation of a foundation pile is thus essential for the proper assessment of the ecological impact. In this paper, the structure-borne wave radiation is investigated with the help of a semi-analytical model for two cases. The first case considers a pile that is installed with the help of an impact hammer, whereas the second one deals with a pile that is driven into the seabed with the help of a vibratory device. The spatial distribution and the frequency content of the radiated sound are analyzed, and the differences are highlighted between the two cases. The model is validated with data available in the literature that were collected during several measurement campaigns. Subsequently, the predicted noise levels are converted into an equivalent index that reflects the auditory damage to certain marine species, and a method is presented for the derivation of zones of impact around the pile that are based on the noise predictions by the models and the chosen method of installation. This approach can be used to define critical zones within which a predefined level of auditory damage is to be expected based on a specific installation scenario.
机译:如今,海洋环境中的人为噪声排放已成为一个关键问题,并引起了各国监管机构的关注。特别是,在为海上风电业安装基础桩的过程中产生的噪声被认为对水生生物有害。因此,对基础桩安装过程中的水下噪声进行可靠的预测对于正确评估生态影响至关重要。本文利用半解析模型研究了两种情况下的结构传播波辐射。第一种情况考虑的是在冲击锤的帮助下安装的桩,而第二种情况涉及的是通过振动装置将其打入海床的桩。分析了辐射声的空间分布和频率成分,并突出了这两种情况之间的差异。该模型已通过文献中的可用数据进行了验证,这些数据是在几次测量活动中收集的。随后,将预测的噪声级别转换为反映对某些海洋物种的听觉损害的等效指标,并根据模型的噪声预测和所选方法,提出了一种推导桩周围撞击区域的方法。安装方法。该方法可用于定义关键区域,在这些关键区域中,将基于特定的安装方案来预期预定义水平的听觉损害。

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