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NUMERICAL ANALYSIS OF SOIL RESPONSE TO ICE SCOURING

机译:土壤反应对冰洁面的数值分析

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Icebergs and ice ridges frequently scour the surface of seabed deposits. Ice scouring can be problematic for offshore pipelines and other seabed installations. In order to reduce the risk of failure, pipelines are buried in the seabed. However, a stationary or moving ice feature could cause a significant increase in stresses and deformation in the seabed soil deposits below the contact surface between the soil and the ice, and consequently, might result in structural failure of buried pipeline. Safe burial depth for pipelines has been the subject of both experimental and numerical studies. In this paper, two and three dimensional analyses are conducted using PLAXIS and ADINA. In these analyses, geometric and material nonlinearities are considered. In order to establish the validity of the finite element calculations, the experimental results reported in the literature and the numerical results obtained in the present study are compared. The emphasis is placed on determining the importance of (1) using interface elements between different materials such as soil and ice, soil and pipelines; (2) using the soil model correctly, and (3) using a three dimensional analysis rather than a two dimensional analysis. The changes taking placed in the deformation pattern and the stress states in the seabed soils resulting from ice scouring are determined. The effects of pipeline burial depth, the shape of the ice feature, and the characteristics of seabed soils on the stresses acting on the pipeline are evaluated.
机译:冰山和冰山经常冲刷海底矿床的表面。海上管道和其他海底装置可能有问题。为了降低失败风险,管道埋在海底。然而,静止或移动的冰功能可能导致海底土壤沉积物低于土壤和冰之间的接触表面的应力和变形的显着增加,因此可能导致埋地管道的结构失效。管道安全埋藏深度一直是实验和数值研究的主题。在本文中,使用Plaxis和Adina进行两种和三维分析。在这些分析中,考虑几何和材料非线性。为了确定有限元计算的有效性,比较了文献中报道的实验结果和本研究中获得的数值结果。重点是在不同材料之间使用诸如土壤和冰,土壤和管道等不同材料之间的界面元素来确定(1)的重要性; (2)使用土壤模型正确使用,(3)使用三维分析而不是二维分析。确定采取的变形和由冰擦冰造成的海底土壤中的变形模式和应力状态。评估了管道埋藏深度,冰特征形状的影响以及海底土壤对管道作用的应力的特点。

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