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首页> 外文期刊>International Journal of Naval Architecture and Ocean Engineering >Crushing study for interlocked armor layers of unbonded flexible risers with a modified equivalent stiffness method
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Crushing study for interlocked armor layers of unbonded flexible risers with a modified equivalent stiffness method

机译:用改进的等效刚度法对无粘结挠性立管互锁的铠装层进行破碎研究

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摘要

Interlocked armor layers of unbonded flexible risers may crush when risers are being launched. In order to predict the behavior of interlocked armor layers, they are usually simplified as rings with geometric and contact nonlinearity ignored in the open-literature. However, the equivalent thickness of the interlocked armor layer has not been addressed yet. In the present paper, a geometric coefficientγis introduced to the equivalent stiffness method, and a linear relationship betweenγand geometric parameters of interlocked armor layers is validated by analytical and finite element models. Radial stiffness and equivalent thickness of interlocked armor layers are compared with experiments and different equivalent methods, which show that the present method has a higher accuracy. Furthermore, hoop stress distribution of interlocked armor layer under crushing is predicted, which indicates the interlocked armor layer can be divided into two compression and two expansion zones by four symmetrically distributed singular points.
机译:发射立管时,未粘合的柔性立管的联锁铠装层可能会破裂。为了预测联锁铠装层的行为,通常将其简化为在开放文献中忽略了几何和接触非线性的环。但是,联锁铠装层的等效厚度尚未解决。在等效刚度法中引入了几何系数γ,并通过解析和有限元模型验证了联锁铠装层的γ与几何参数之间的线性关系。将互锁铠装层的径向刚度和等效厚度与实验和不同的等效方法进行了比较,表明本方法具有较高的精度。此外,还预测了互锁的铠装层在挤压下的环向应力分布,表明该互锁的铠装层可以通过四个对称分布的奇异点分为两个压缩区域和两个扩展区域。

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