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Analysis Methods and Design Measures for the Reduction of Noise and Vibration Induced by Marine Propellers

机译:船舶螺旋桨引起的噪声和振动减少的分析方法和设计措施

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The paper presents the ongoing work in the research project ProNoVi. The objective of the project is to improve the numerical and experimental methods for the prediction of noise and vibrations induced by a propeller operating behind ship hull in full-scale conditions. Based on the improved methods practical recommendations for the reduction of noise and vibration levels for different classes of vessels are a further objective. The propeller cavitation noise is identified as the dominating noise source, which coincides with important frequencies of perception of marine fauna and thus may have negative impact on marine life. As a side effect, reducing the noise under water will increase comfort and thus safety for crew and passengers on board. The project aims at delivering a better understanding of fundamental physical mechanisms related to turbulence, induced vorticity and cavitation dynamics, which play a decisive role in generation of tonal and broadband propeller noise. The project partners will give a joint presentation, focusing on state-of-the-art in the field, today's challenges in both the experimental and numerical approaches, and how the ProNoVi project is addressing those. ProNoVi is funded by the European Union. Further information is available at www.martera.eu/projects/pronovi.
机译:本文提出了Pronovi的研究项目正在进行的工作。该项目的目的是改进以满量程条件,在船壳后面操作的螺旋桨诱导的噪声和振动预测的数值和实验方法。基于改进的方法,用于减少不同类别船舶的噪声和振动水平的实用建议是另一个目标。螺旋桨空化噪声被识别为主导噪声源,这与海洋动物动物的重要频率相吻合,因此可能对海洋生物产生负面影响。作为副作用,减少水下的噪音将增加舒适性,从而增加船员和乘客的安全性。该项目旨在更好地了解与湍流,诱导的涡流和空化动力学相关的基本物理机制,这在发电时发挥着决定性的音调和宽带螺旋桨噪声。项目合作伙伴将提供联合介绍,重点是该领域的最先进,今天在实验和数值方法中的挑战以及Prinovi项目如何解决这些问题。 Pronovi由欧洲联盟资助。提供更多信息,请访问www.martera.eu/projects/pronovi。

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