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Experimental investigation of hull girder vibrations of a flexible backbone model in bending and torsion

机译:挠性主梁模型船体梁弯曲和扭转振动的实验研究

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Although the coupled horizontal-torsional vibrations of open ships have been investigated numerically for decades, the available experimental data in oblique seas seem rare. Model tests, considering natural frequencies of bending and torsional modes, have been conducted by the Centre for Ships and Ocean Structures (CeSOS) in the towing tank and ocean basin. A flexible backbone model was designed with five cut-outs on the top side of the aluminum beam to realize approximately torsional stiffness as well as vertical and horizontal bending stiffness. This paper mainly deals with measured bending and torsional vibrations in regular and irregular waves. The damping ratios, mode shapes, and modal moments were derived from experimental data, and a numerical model based on modal superimposition is established according to the measured hydroelastic properties. Some time-domain simulations are carried out considering the structural characteristics, and compared with measured results. The test data in regular waves are presented to show the possible factors of influence on the vibrations. The effect of bending and torsional vibrations on the extreme response values in irregular waves is estimated. The uncertainties in the experiments are discussed and conclusions are presented at the end of this paper.
机译:尽管数十年来已经对开放舰船的水平扭转振动进行了数值研究,但在倾斜海洋中可获得的实验数据似乎很少。考虑到弯曲和扭转模态的固有频率的模型测试已经由拖船和海盆中的船舶和海洋结构中心(CeSOS)进行。设计了一个灵活的骨架模型,在铝梁的顶部有五个切口,以实现近似的扭转刚度以及垂直和水平弯曲刚度。本文主要处理在规则波和不规则波中测得的弯曲和扭转振动。从实验数据中得出了阻尼比,模态形状和模态力矩,并根据所测得的水弹性特性建立了基于模态叠加的数值模型。考虑到结构特征进行了一些时域仿真,并与测量结果进行了比较。给出了规则波的测试数据,以显示影响振动的可能因素。估计弯曲和扭转振动对不规则波中极限响应值的影响。讨论了实验中的不确定性,并在本文末尾给出了结论。

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