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A validation study of the model test method for propeller cavitation noise prediction

机译:螺旋桨空化噪声预测模型试验方法的验证研究

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摘要

Propeller cavitation noise, one of the main sources of ship noise, has recently gained much attention owing to its possible adverse effects on marine life. In order to predict full-scale propeller cavitation noise, a model test method using the large cavitation tunnel at the Korea Research Institute of Ships & Ocean engineering (KRISO) was developed. The standard procedure consists of reproduction of the noise source, noise measurement, post-processing, and noise scaling. The propeller cavitation is reproduced in the same manner as in the cavitation observation test, and the noise is measured. After correcting the multipath effect and the background noise, the model-scale source level (SL) is estimated. The transfer function (TF), which represents the multipath effect, can be measured using a virtual source (or two sources for the twin propeller). Finally, the full-scale SL is predicted by a scaling method. This paper focused on validation of the TF correction and the scaling methods that most affect noise prediction. Validation tests were performed on two ships: a 14,000 TEU container carrier with a single propeller and a 176 K LNG carrier with twin propellers. The validation study confirmed the effectiveness of the model test method in predicting full-scale propeller cavitation noise.
机译:螺旋桨空化噪声是船舶噪音的主要来源之一,最近在海洋生物的可能性不利影响中获得了很大的关注。为了预测全规模的螺旋桨空化噪声,开发了韩国研究所(KRISO)中使用大型空化隧道的模型试验方法。标准程序包括噪声源,噪声测量,后处理和噪声缩放的再现。以与空化观察试验相同的方式再现螺旋桨空化,并且测量噪声。在纠正多径效果和背景噪声后,估计模型级源电平(SL)。表示多径效应的传递函数(TF)可以使用虚拟源(或双螺旋桨的两个来源)来测量。最后,通过缩放方法预测满量程SL。本文集中于验证TF校正和大多数影响噪声预测的缩放方法。验证测试是在两艘船上进行的:14,000个TEU容器载体,具有单个螺旋桨和具有双螺旋桨的176k LNG载体。验证研究证实了模型试验方法在预测全规模螺旋桨空化噪声方面的有效性。

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