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首页> 外文期刊>International Journal of Naval Architecture and Ocean Engineering >Stability analysis of deepwater compliant vertical access riser about parametric excitation
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Stability analysis of deepwater compliant vertical access riser about parametric excitation

机译:参数激励下深水顺应立管的稳定性分析

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If heave motion in the platform causes horizontal parametric vibration of a Compliant Vertical Access Riser (CVAR), the riser may become unstable. A combination of riser parameters lies in the unstable region aggravates vibrational damage to the riser. Change of axial tensile stress in the riser combined with its natural frequency and mode shape change results in mode coupling. In accordance with the state transition matrices of the riser in the coupled and uncoupled states, the stable and unstable regions were obtained by Floquet theory, and the vibration response under different conditions was obtained. The parametric excitation of the CVAR is shown to occur mainly in first-order unstable regions. Mode coupling may cause parametric excitation in the least stable regions. Damping reduces the extent of unstable regions to a certain extent.
机译:如果平台中的举升运动引起兼容的垂直通道提升板(CVAR)的水平参数振动,则提升板可能会变得不稳定。提升管参数的组合位于不稳定区域,加剧了提升管的振动损伤。冒口中的轴向拉伸应力的变化及其固有频率和振型的变化共同导致振型耦合。根据立管在耦合和非耦合状态下的状态转移矩阵,利用Floquet理论获得了稳定和不稳定区域,并获得了不同条件下的振动响应。 CVAR的参数激励显示主要发生在一阶不稳定区域。模式耦合可能在最不稳定的区域中引起参数激励。阻尼在一定程度上减少了不稳定区域的范围。

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