首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >EQUIVALENT LAYER APPROACHES TO PREDICT THE BISYMMETRIC HYDROSTATIC COLLAPSE STRENGTH OF FLEXIBLE PIPES
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EQUIVALENT LAYER APPROACHES TO PREDICT THE BISYMMETRIC HYDROSTATIC COLLAPSE STRENGTH OF FLEXIBLE PIPES

机译:等效层方法预测柔性管的双对称静压塌陷强度

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The hydrostatic collapse strength of a flexible pipe is largely dependent on the ability of its carcass and pressure armor to resist radial loading and, therefore, its prediction involves an adequate modeling of these layers. Hence, initially, this work proposes a set of equations to estimate equivalent thicknesses and physical properties for these layers, which allows their modeling as equivalent orthotropic cylinders. These equations are obtained by simulating several two-point static ring tests with a three-dimensional finite element (FE) model based on beam elements and using these results to form datasets that are analyzed with a symbolic regression (SR) tool. The results of these analyses are the closed-form equations that best fit the provided datasets. After that, these equations are used in conjunction with a three-dimensional shell FE model and a previously presented analytical model to study the dry and wet hydrostatic collapse mechanisms of a flexible pipe. The predictions of these models agreed quite well with the collapse pressures obtained in experimental tests thus indicating that the use of the equivalent approach is promising.
机译:挠性管的静水压溃强度在很大程度上取决于其胎体和压力装甲抵抗径向载荷的能力,因此,其预测涉及对这些层的适当建模。因此,最初,这项工作提出了一组方程,以估计这些层的等效厚度和物理特性,从而可以将它们建模为等效正交各向异性圆柱体。这些方程式是通过使用基于梁单元的三维有限元(FE)模型模拟​​几个两点静态环试验并使用这些结果形成可通过符号回归(SR)工具进行分析的数据集而获得的。这些分析的结果是最适合提供的数据集的闭式方程式。之后,将这些方程式与三维壳体有限元模型和先前提供的分析模型结合使用,以研究挠性管的干,湿静水力坍塌机理。这些模型的预测与实验测试中获得的坍塌压力非常吻合,因此表明使用等效方法是有希望的。

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