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Underwater Free-Vibration Analysis of Full-Scale Marine Propeller Using a Fiber Bragg Grating-Based Sensor System

机译:基于光纤光栅的传感器系统对满载船舶螺旋桨的水下自由振动分析

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摘要

A detailed experimentally-based study has been carried out on instrumented, full-scale marine propeller blades in order to investigate their vibration behaviour, both in air and underwater. To obtain data with minimum perturbation to the characteristics of the blades, a fiber Bragg grating-based sensor network system was designed and implemented, for the first time. The individual vibration frequencies at each measurement point and thus the broader vibration patterns seen for each of the blades were obtained, with excitation both in air and in water and the results are compared favourably with those obtained from finite-element analysis. The vibration patterns obtained show that the same modes of vibration occur in air and in water, although in some natural frequencies, the mode order is seen to change from one blade to another on the same propeller. The extensive performance survey carried out and experimental data obtained have also shown that while the effect of the added mass of water on the natural frequencies of the blades in the fundamental modes is considerable, this effect diminishes as the natural frequencies of the blades increase. The results obtained from the optical fiber sensor network were compared with those from previous work in this area using different and less satisfactory techniques and it was confirmed that the ratio of the natural frequencies in water to those in air increases in a linear manner as the frequencies were increasing. In addition, the natural frequencies of a blade were measured under different depths of propeller immersion.
机译:为了研究其在空气和水下的振动行为,已经对仪器化的全尺寸船用螺旋桨叶片进行了基于实验的详细研究。为了获得对叶片特性影响最小的数据,首次设计并实现了基于光纤布拉格光栅的传感器网络系统。通过在空气和水中的激励,获得了每个测量点的个体振动频率,从而获得了每个叶片所见的更宽的振动模式,并将结果与​​有限元分析的结果进行了比较。所获得的振动模式表明,虽然在某些自然频率下,空气和水中的振动模式相同,但在同一螺旋桨上,模式顺序从一个叶片变为另一个叶片。进行的广泛性能调查和获得的实验数据还表明,虽然在基本模式下增加的水量对叶片的固有频率的影响是相当大的,但是随着叶片的固有频率的增加,这种影响会减小。使用不同且不太令人满意的技术,将从光纤传感器网络获得的结果与该领域以前的研究结果进行比较,并证实了随着频率的增加,水中自然频率与空气中自然频率之比呈线性增加在增加。另外,在螺旋桨浸没的不同深度下测量了叶片的固有频率。

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