Investigation of The Value of Spring Constant and Mass on The Efficiency of Moving Mass Devices

M. Taqiuddin, Nik Mohd Ridzuan Shaharudin, O. Yaakob
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Abstract

Simple configuration and has good efficiency, make a moving mass stabilizer one of the options that can be applied to reduce roll motion on a small vessel. This stabilizer however has a limitation in dealing with the ship’s hydrostatic changes while on duty especially when the stabilizer is designed to be passive. The purpose of this research is to improve the ability of the stabilizer to be able to adapt the change in ship hydrostatics. A Tsunami 22’ fishermen vessel model was selected to be used for this research. By conducting roll decay experiments, natural frequency data from the vessel is then used to design calculations for the device on two different load conditions. Moving mass stabilizer frequency is dependent on two parts that are the spring coefficient “k” and the weight of the mass moving. In this Research, Spring adjustment is selected to make the stabilizer able to change frequency following change on the vessel. It is found that the best frequency ratio between the frequency of stabilizer and vessel is 1. Adjusting the spring of the stabilizer turned out to give an increase in device performance by 8.9 % when compared to adjusting the mass. The results obtained in this research indicate the moving mass stabilizer has good potential to reduce the roll motion.
弹簧常数和质量值对运动质量装置效率的影响
运动质量稳定器结构简单,效率高,是减少小型船舶侧倾运动的一种选择。然而,这种稳定器在处理当值时船舶的流体静力变化方面有局限性,特别是当稳定器被设计为被动时。本文的研究目的是为了提高稳定器适应船舶静力学变化的能力。本研究选择了一个海啸渔船模型。通过进行滚转衰减实验,然后将容器的固有频率数据用于两种不同负载条件下设备的设计计算。移动质量稳定器的频率取决于弹簧系数“k”和移动质量的重量两部分。在本研究中,为了使稳定器能够随着容器上的变化而改变频率,选择了弹簧调节。结果表明,稳定器与船舶频率的最佳频率比为1。与调整质量相比,调整稳定器的弹簧使装置性能提高了8.9%。研究结果表明,运动质量稳定器具有良好的减横摇效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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