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Numerical and experimental analysis of the static behavior of highly deformed risers

机译:高变形立管静态特性的数值和实验分析

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摘要

This paper models a slender, flexible structure used as a drill string or riser in the offshore oil and gas industry that connects the well-head with a floating control vessel. These systems are used in deep-water drilling applications and present considerable design challenges due to their extreme flexibility and susceptibility to buckling and vibration. Two typical configurations are used (Bai and Bai, 2005), with a common feature involving the attachment of a buoy designed to relieve some of the axial forces acting on the riser, especially at the attachment points. Previous work by the authors studied numerical results of small-amplitude vibrations and two other equilibrium configurations using parameter values that closely resemble the full-scale application (Santillan et al., 2008). Here, two new configurations are considered, and experiments are designed and conducted to verify these equilibrium results.
机译:本文对海上石油和天然气工业中用作钻柱或立管的细长而灵活的结构进行建模,该结构将井口与浮动控制船连接起来。这些系统用于深水钻井应用,由于其极高的灵活性以及对屈曲和振动的敏感性,因此提出了相当大的设计挑战。使用了两种典型的配置(Bai和Bai,2005),其共同特征是浮标的连接设计成可减轻作用在立管上的一些轴向力,特别是在连接点。作者先前的工作使用与全尺寸应用极为相似的参数值研究了小振幅振动和其他两个平衡构型的数值结果(Santillan等,2008)。在这里,考虑了两个新的配置,并设计并进行了实验以验证这些平衡结果。

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