首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >LAZY WAVE CATENARY RISERS: SCALING FACTORS AND ANALYTICAL APPROXIMATION OF THE STATIC STRESS RANGE IN THE TOUCHDOWN ZONE
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LAZY WAVE CATENARY RISERS: SCALING FACTORS AND ANALYTICAL APPROXIMATION OF THE STATIC STRESS RANGE IN THE TOUCHDOWN ZONE

机译:懒惰波的上升趋势:触击区静应力范围的尺度因子和解析近似

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Offshore exploration and production of oil and gas continue to increase and move into ever deeper water. Steel catenary risers (SCRs) are one of the most cost effective type of risers in deep water. However, high sensitivity to vessel motions and hydrodynamic loading in the touchdown zone may limit the feasibility of SCR applications. In recent years, there has been a growing interest in the use of Lazy-wave catenary riser (LWR) due to their better fatigue performance in the touchdown zone through the damping effect of the buoyancy section. The design of LWR involves numerous parameters that lead to a wide range of configurations. Each of these configurations needs to be evaluated against several criteria with respect to geometry, strength and fatigue for instance. This paper presents how tools recently proposed to improve the design of standard SCRs can be extended to benefit LWR applications. The dimensionless groups governing the structural response of LWRs are established in the aim of easing sensitivity analysis to key input parameters for LWR design, assisting experiments and reducing the number of numerical simulations. Moreover, the DAF (dynamic amplification factor) approach for dynamic response which has previously been explored for SCRs could also be used to simplify design of LWRs. As DAF relies on the analytical determination of static response, this framework shows that analytical boundary layer solutions in conjunction with the use of a Winkler type soil model can efficiently and accurately predict the static stress range of LWRs observed in the TDZ.
机译:海上石油和天然气的勘探和生产继续增加,并进入更深的水中。钢悬链式立管(SCR)是深水中成本效益最高的立管类型之一。但是,对着陆区中船只运动和流体动力载荷的高灵敏度可能会限制SCR应用的可行性。近年来,由于懒人的悬链提升管在浮力区的阻尼作用下在着陆区具有更好的疲劳性能,因此人们对使用懒惰的悬链提升管(LWR)越来越感兴趣。 LWR的设计涉及众多参数,这些参数导致了各种各样的配置。这些配置中的每一个都需要针对例如几何形状,强度和疲劳性等多个标准进行评估。本文介绍了最近提出的用于改进标准SCR设计的工具如何可以扩展以使LWR应用受益。建立用于控制轻水堆结构响应的无量纲组的目的是简化对轻水堆设计关键输入参数的敏感性分析,协助实验并减少数值模拟的次数。此外,以前针对SCR探索的用于动态响应的DAF(动态放大因子)方法也可用于简化LWR的设计。由于DAF依赖于对静态响应的分析确定,因此该框架表明,分析边界层解决方案与Winkler型土壤模型的结合可以有效且准确地预测在TDZ中观察到的轻水堆的静应力范围。

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