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Analysis on Wave-Induced Transient Lateral Vibration of Four-leg Structure Supported by Seabed Layer—Analysis of lateral vibration of an offshore structure with consideration of the effect of seabed layer (4th Report)

机译:海底结构横向振动横向振动的四腿结构波动瞬态横向振动分析(第4次报告)

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摘要

When analyzing the lateral vibration of an offshorestructure supported by seabed layer, the effect of this layer must betaken into consideration. In the third report, a method has beenproposed for reducing a four-leg offshore structure supported byseabed layer to one-leg structure, and its natural frequency oflateral vibration has been analyzed theoretically. Furthermore, thevalidity of this method has been clarified by the model experiment.In this paper, the wave-induced resonance amplitude as well asbending stress in the leg of the offshore structure were analyzedtheoretically and simulated numerically.The main results obtained are as follows:(1) With respect to the off-shore structure considered in thisstudy, the first resonance of lateral vibration could be inducedin it by practical wave-excitations. Once the resonance occurs,the leg's amplitude of the structure will increase almostlinearly as the time elapses.(2) The maximum bending stress caused by the first-mode oflateral vibration always occurs at the top of the leg.(3) As soon as the vibration is fallen into the resonant state, themaximum bending stress in the leg increases almost linearlywith the time, and then reaches the yield strength of the legmaterial in about 50 seconds, causing the failure of the structure.(4) Based upon the above results, the criteria for designingoffshore structures are proposed from the viewpoint ofevading the resonance phenomena caused by surface waves.
机译:在分析海底层支撑的散文的横向振动时,必须考虑该层的效果。在第三次报告中,一种方法已经不足以减少一个四腿近海结构支持的一个腿部结构,并在理论上已经分析了其自然频率的自然频率。此外,通过模型实验阐明了这种方法的过度性。在本文中,在数值上分析了海上结构的腿部中的波引起的谐振幅度,以及近海结构的腿部的应力。获得的主要结果如下:( 1)关于在该学习中考虑的偏移结构,横向振动的第一共振可以通过实际波激发诱导。发生共振后,随着时间的推移,结构的腿部的幅度将差异。(2)由第一模式振动引起的最大弯曲应力总是发生在腿的顶部。(3)一旦振动落入谐振状态,腿部的最大弯曲应力几乎线性地增加了时间,然后在大约50秒内达到腿部材料的屈服强度,从而导致结构的失效。(4)基于上述结果,从表面波引起的谐振现象的观点来提出设计的标准。

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