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A PROCEDURE TO INCLUDE SLIP DAMPING IN A VIV ANALYSIS OF AN UMBILICAL

机译:在大麻的活体分析中包括滑移阻尼的程序

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Ocean currents may cause vortex induced vibrations (VIV) of deep-water umbilicals. The VIV response may give significant contributions to the total fatigue damage. Good estimations of the VIV response and damage are therefore important for the design of deep-water umbilicals. As VIV response is very sensitive to the structural damping, good response and fatigue estimates will be dependent on good estimates of the damping and that they are included in the VIV response analysis in a consistent way. A complex cross section such as an umbilical or a flexible riser will have two sources of structural damping; damping due to the strain variation in the individual materials that make up the cross sections, and damping due to the different layers slipping against one another. The first may be denoted material damping and is present at all response levels, and will be particularly important at low response levels. The second may be denoted slip damping and will contribute when the curvature exceeds the initial slip curvature. Ideally, accurate data for both the material and the slip damping are available. Unfortunately, this is not always the case and the damping parameters must then be estimated. The material damping may be estimated from the material properties of the various layers in the cross section, taking operating conditions such as temperature into account. The slip damping may be estimated from detailed cross-sectional analyses. As the slip damping is dependent on the curvature, iterations are needed to ensure that the applied damping and the calculated response are consistent with each other. A procedure to include these iterations within a VIV response calculation is proposed. A case study is presented demonstrating the use of the proposed procedure for a deep-water umbilical in a lazy wave configuration. For the case studied, the maximum curvatures caused by VIV are significantly reduced.
机译:洋流可能会引起深水脐带的涡激振动(VIV)。 VIV反应可能会对总疲劳损伤做出重要贡献。因此,对VIV响应和损伤的正确估算对于深水脐带缆的设计很重要。由于VIV响应对结构阻尼非常敏感,因此良好的响应和疲劳估算将取决于阻尼的良好估算,并且它们以一致的方式包含在VIV响应分析中。复杂的横截面(例如脐带或柔性立管)将具有两个结构阻尼源;第二个是结构阻尼源。由于组成横截面的各个材料中的应变变化而产生的阻尼,以及由于不同的层相互滑动而产生的阻尼。第一个可以表示为材料阻尼,并且存在于所有响应级别,并且在低响应级别特别重要。第二个可以表示为滑动阻尼,并且在曲率超过初始滑动曲率时会起作用。理想情况下,可以获得有关材料和滑动阻尼的准确数据。不幸的是,情况并非总是如此,因此必须估算阻尼参数。考虑到诸如温度的操作条件,可以从横截面中的各个层的材料特性来估计材料阻尼。滑移阻尼可以根据详细的横截面分析来估计。由于滑动阻尼取决于曲率,因此需要进行迭代以确保所施加的阻尼和计算出的响应彼此一致。提出了在VIV响应计算中包括这些迭代的过程。提出了一个案例研究,以证明所建议的程序在懒波配置中对深水脐带缆的使用。对于所研究的情况,由VIV引起的最大曲率显着降低。

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