推进器
叶轮
空化
降噪
噪音(视频)
声学
还原(数学)
喷射(流体)
材料科学
螺旋桨
工程类
机械工程
计算机科学
海洋工程
物理
航空航天工程
数学
人工智能
几何学
图像(数学)
作者
He Junze,Xianzhong Wang,Weiwei Wang,Longlong Xu,Huang Weibei,Wenchao Qi,Hu Huixuan
出处
期刊:Journal of Fluids Engineering-transactions of The Asme
[ASM International]
日期:2025-05-23
卷期号:: 1-35
摘要
Abstract Propulsor noise is a major contributor to underwater radiated noise from vessels. The pump jet propulsor (PJP), widely used in underwater vehicles, is studied here for its non-cavitation noise through experimental and numerical simulations. A model of the axial-flow PJP is created, and large eddy simulation (LES) with acoustic analogy methods is used to calculate flow noise. A test platform is developed with a recirculating water pipeline to measure head, shaft power, and sound pressure levels. Experimental and simulation results are compared. The head measurement error is minimal, with a maximum of 0.68%, and the flow noise frequency spectrum closely matches the experimental data. The total sound pressure level within the 10-4000 Hz range has an error of less than 5 dB, confirming the simulation?s accuracy. The study proposes a biomimetic noise reduction design inspired by owl wing serrations. A parametric analysis of different serrated shapes shows that the curved serrated impeller has a maximum efficiency loss of 0.58%, significantly reducing low-frequency noise. It lowers the first four blade harmonics by 10.93 dB and reduces the total sound pressure level by 3.49 dB in the 25-4000 Hz range.
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