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Dynamic interaction of catenary risers with the seafloor

机译:悬链提升管与海底的动态相互作用

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It is the purpose of this study to quantify the sea-bottom soil reaction effect on the dynamics of a Steel Catenary Riser by incorporating the soil reaction forces into the theoretical model of the dynamic equilibrium system. The calculations for the soil reaction forces have been performed quasi-statically, assuming specified embedment depths and trenching geometries. The plane stresses of the soil are determined with the aid of the commercial Geotechnical software, Phase2. Accordingly, the stresses are integrated around the arched riser-soil contact surface for the derivation of vertical soil reaction forces that resist to the penetration of the riser. These force-values are introduced in the nonlinear dynamic model as concentrated loads which are applied at the touchdown point (TDP). Several tests cases of top end harmonic excitations have been performed, aiming to investigate the effect of the TDP soil reaction on the various dynamic parameters which are responsible for fatigue damage.
机译:这项研究的目的是通过将土壤反作用力纳入动态平衡系统的理论模型中,来量化海底土壤反应对钢悬链提升管动力学的影响。假设指定的埋入深度和开槽几何形状,则对土壤反作用力的计算已准静态进行。土壤的平面应力借助商用Geotechnical软件Phase2确定。因此,应力在拱形立管与土壤的接触表面周围积分,以导出抵抗立管渗透的垂直土壤反作用力。这些力值作为集中载荷引入非线性动态模型中,集中载荷施加在着陆点(TDP)上。已经进行了几种高端谐波激励的测试案例,目的是研究TDP土体反应对造成疲劳损伤的各种动态参数的影响。

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