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Roll Motion of a Ship and the Roll Stabilising Effect of Bilge Keels

机译:船舶侧倾运动与舱底龙骨的侧倾稳定作用

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The roll motion of a ship on waves is one of the six degrees of freedom and is the most difficult to predict since it deals with a motion similar to a spring-mass damper system, poorly damped by ship generated waves, in addition to the action of waves from the high seas. This problem increased from the second half of the 19th century when sailing propulsion was replaced by steam machines and iron replaced wood, which led to design modifications in ships affecting transversal stability, with the result of an increment in the ship's roll motion. As a consequence, it has been necessary to develop different systems which, on the one hand, increase the natural period of this motion in order to decrease its amplitude and reduce the risks that the wave encounter frequency would resonate with the natural frequency of the ship's motion; and on the other hand, to generate a damping effect to this motion. Bilge keels, passive stabilisers with no moving parts, form the simplest and cheapest element that may be incorporated on a ship to reduce this motion. This paper studies roll motion in general and then analyses bilge keels from different points of view.
机译:船舶在波浪上的侧倾运动是六个自由度之一,并且最难预测,因为它所处理的运动类似于弹簧质量阻尼器系统,除了作用之外,还很难被船舶产生的波浪阻尼。公海的波浪从19世纪下半叶开始,用蒸汽机代替了航行推进器,并用铁代替了木材,这个问题就增加了,这导致了船舶设计上的改变,从而影响了横向稳定性,并增加了船舶的侧倾运动。因此,有必要开发不同的系统,一方面,要增加该运动的自然周期,以减小其振幅,并降低波遇到频率与船舶固有频率共振的风险。运动;另一方面,对该运动产生阻尼作用。舱底龙骨,无活动部件的被动式稳定器,是船上可以减少这种运动的最简单,最便宜的部件。本文一般研究侧倾运动,然后从不同的角度分析舱底龙骨。

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