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An hp-adaptive discontinuous Galerkin method for modelling snap loads in mooring cables

机译:一种hp自适应不连续Galerkin方法,用于对系泊缆索中的卡扣载荷进行建模

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摘要

This paper focuses on modelling snap loads in mooring cables. Snap loads are a known problem for the established oil and gas industry, and they pose a major challenge to robust mooring design for the growing industry of wave energy conversion. We present a discontinuous Galerkin formulation using a local Lax-Friedrich Riemann solver to capture snap loads in mooring cables with high accuracy. An hp−adaptive scheme is used to dynamically change the mesh size h and the polynomial order p, based on the local solution quality. We implement an error indicator and a shock identifier to capture shocks with slope-limited linear elements, while using high-order Legendre polynomials for smooth solution regions. The results show exponential error convergence of order p + 1∕2 for smooth solutions. Efficient and accurate computations of idealised shock waves in both linear and nonlinear materials were achieved using hp−adaptivity. Comparison with experimental data gives excellent results, including snap load propagation in a mooring chain. Application on a wave energy device using coupled simulations highlights the importance of the touch-down region in catenary moorings. We conclude that the formulation is able to handle snap loads with good accuracy, with implications for both maximum peak load and fatigue load estimates of mooring cables.
机译:本文着重于对系泊电缆中的按扣载荷进行建模。快速载荷是成熟的石油和天然气工业已知的问题,它们对不断增长的波浪能转换行业的坚固系泊设计提出了重大挑战。我们提出了使用局部Lax-Friedrich Riemann求解器的不连续Galerkin公式,以高精度捕获系泊电缆中的捕捉载荷。 hp自适应方案用于根据本地解决方案质量动态更改网格大小h和多项式阶数p。我们实现了一个误差指示器和一个震荡标识符,以使用斜率有限的线性元素捕获震荡,同时针对平滑解区域使用了高阶Legendre多项式。结果表明,对于光滑解,指数误差收敛为p + 1∕2。使用hp-adaptivity,可以对线性和非线性材料中的理想冲击波进行高效,准确的计算。与实验数据的比较给出了极好的结果,包括系泊链中的快速载荷传播。在使用耦合模拟的波浪能设备上的应用突出了接触网在系泊系统中的重要性。我们得出的结论是,该公式能够以较高的精度处理瞬态载荷,这对系泊电缆的最大峰值载荷和疲劳载荷估计都有影响。

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