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Large Deformation Finite Element Analysis of Riser-Soil Interactions with Strain-Softening Soils

机译:拉丝土相互作用的大变形有限元分析与菌株软化土壤相互作用

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Dynamic analyses of steel catenary risers (SCRs) suspended from a floating platform usually show that the vicinity of the zone where the riser touches down on the seabed is important to fatigue assessments, and can be critical in realizing an economical SCR design or in assessing SCR design life extension. The motivations of the paper are to advance the understanding of the complex mechanism of SCR-soil interactions in a comprehensive yet efficient way, to supplement the extensive model test-based SCR-soil interaction studies in the literature, and to offer a numerical tool to predict the SCR-soil interaction in different clay types. The objective is to investigate the fundamental mechanism of SCR-soil interactions using advanced finite element (FE) analyses. The FE analysis is conducted in Abaqus using the coupled Euler-Lagrangian (CEL) technique to capture the local large deformation surrounding a riser. A strain-softening soil model for deepwater soft clays subject to cyclic degradation is developed based on cyclic direct simple shear (DSS) tests to avoid cycle-by-cycle simulations. The stress-displacement relations are proposed in the FE analysis to avoid the size effect associated with strain-softening soils. The FE analysis results are compared to the test data from the independently conducted model tests and the established results from the literature. Good agreements among different studies are observed.
机译:悬浮平台悬挂的钢结网升管(SCR)的动态分析通常表明,在海床上触及的区域附近对疲劳评估很重要,并且在实现经济的SCR设计或评估SCR时可能是至关重要的设计寿命延伸。本文的动机是以全面但有效的方式推进对SCR - 土壤相互作用的复杂机制,以补充文献中的广泛模型基于试验的SCR - 土壤相互作用研究,并提供数值工具预测不同粘土类型中的SCR土相互作用。目的是使用先进的有限元(Fe)分析来研究SCR - 土壤相互作用的基本机制。 FE分析在ABAQUS中使用耦合的Euler-Lagrangian(CEL)技术进行,以捕获围绕提升管的局部大变形。基于循环直接简单的剪切(DSS)测试,开发了一种受循环降解的深水软粘土的菌株软化土壤模型,以避免逐循环模拟。在Fe分析中提出了应力 - 位移关系,以避免与菌株软化土壤相关的尺寸效应。将FE分析结果与来自独立进行的模型测试的测试数据进行比较,以及文献的已建立的结果。观察到不同研究的良好协议。

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