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Algorithmic formulation of clay and sand pipe-soil interaction models for on-bottom stability analysis

机译:基于底部稳定性分析的粘土和砂管 - 土相互作用模型的算法制剂

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摘要

This paper presents a new algorithmic formulation of the clay and sand pipe-soil interaction models recommended by the DNV-RP-F109 code for dynamic on-bottom stability analysis of submarine pipelines. The pipe-soil force update algorithm is formulated within the framework of computational elasto-plasticity and applies Backward-Euler integration to ensure stability and robustness for large time step sizes. Algorithmic optimization techniques are developed by utilizing a closed-form solution and subincrementation. A numerical verification study covering full cyclic displacement ranges of a 12 inch pipeline is presented. The new formulation is shown to increase the time step size by a factor of up to 50 compared to commercial software tools for on-bottom stability analysis. This achievement will be particularly beneficial for long-duration 3D nonlinear time domain on-bottom stability analysis.
机译:本文介绍了DNV-RP-F109代码推荐的粘土和砂管 - 土相互作用模型的新算法配方,用于潜艇管道的动态底部稳定性分析。 在计算弹塑性塑性框架内配制了管道 - 土势更新算法,并适用后向欧拉集成,以确保大型时间尺寸的稳定性和鲁棒性。 通过利用闭合溶液和子段来开发算法优化技术。 介绍了涵盖12英寸管道的全循环位移范围的数值验证研究。 与商业软件工具相比,该新配方显示与用于基于底部稳定性分析的商业软件工具相比,将时间步长增加了50倍。 这种成就对于长时间3D非线性时域在底部稳定性分析中特别有利。

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