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首页> 外文期刊>The Open Ocean Engineering Journal >Numerical Simulation of Liquefaction Deformation of Sand Layer around Bucket Foundations under Dynamic Loadings
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Numerical Simulation of Liquefaction Deformation of Sand Layer around Bucket Foundations under Dynamic Loadings

机译:动载荷作用下桶形基础周围砂土层液化变形的数值模拟

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摘要

The liquefaction deformation of sand layer around a bucket foundation is simulated under equivalent dynamic ice-induced loadings. A simplified numerical model is presented by taking the bucket-soil interaction into consideration. The development of vertical and horizontal liquefaction deformations are computed under equivalent dynamic ice-induced loadings. Firstly, the numerical model and results are proved to be reliable by comparing them with the centrifuge testing results. Secondly, the factors and the development characteristics of liquefaction deformation are analyzed. Finally, the following numerical simulation results are obtained: the liquefaction deformation of sand layer increases with the increase of loading amplitude and with the decrease of loading frequency and sand skeleton's strength. The maximum vertical deformation is located on the sand layer surface and 1/4 times of the bucket's height apart from the bucket's side wall (loading boundary). The maximum horizontal deformation occurs at the loading boundary. When the dynamic loadings is applied for more than 5 hours, the vertical deformation on the sand layer surface reaches 3 times that at the bottom, and the horizontal deformation at 2.0 times of the bucket height apart from the loading boundary is 3.3% of which on the loading boundary.
机译:在等效动冰荷载下,模拟了桶形基础周围砂层的液化变形。通过考虑斗-土相互作用,提出了一种简化的数值模型。垂直和水平液化变形的发展是在等效的动态冰诱导载荷下计算的。首先,通过与离心机测试结果进行比较,证明了数值模型和结果是可靠的。其次,分析了液化变形的影响因素和发展特征。最后,得到了以下数值模拟结果:砂层的液化变形随荷载振幅的增加,荷载频率的减小和砂骨架强度的减小而增大。最大垂直变形位于砂层表面上,并且是铲斗高度的1/4倍,与铲斗的侧壁(装载边界)分开。最大水平变形发生在载荷边界处。当施加动态载荷超过5小时时,砂层表面的垂直变形达到底部的3倍,而距载荷边界2.0倍的铲斗高度的水平变形为其中的3.3%。加载边界。

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