Study on the Capacity Degradation of Bucket Foundation in Liquefied Sand Layer under Cyclic Loads~!2009-07-18~!2009-08-23~!2010-02-02~!

Chi Li, Xiaobing Lu, Shuyun Wang
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引用次数: 1

Abstract

The capacity degradation of bucket foundation in liquefied sand layer under cyclic loads such as equivalent dynamic ice-induced loads is studied. A simplified numerical model of liquefied sand layer has been presented based on the dynamic centrifuge experiment results. The ice-induced dynamic loads are modeled as equivalent sine cyclic loads, the liquefaction degree in different position of sand layer and effects of main factors are investigated. Subsequently, the sand resistance is represented by uncoupled, non-linear sand springs which describe the sub-failure behavior of the local sand resistance as well as the peak capacity of bucket foundation under some failure criterion. The capacity of bucket foundation is determined in liquefied sand layer and the rule of capacity degradation is analyzed. The capacity degradation in liquefied sand layer is analyzed comparing with that in non-liquefied sand layer. The results show that the liquefaction degree is 0.9 at the top and is only 0.06 at the bottom of liquefied sand layer. The numerical results are agreement well with the centrifugal experimental results. The value of the degradation of bucket capacity is 12% in numerical simulating whereas it is 17% in centrifugal experiments.
循环荷载作用下液化砂层桶形基础承载力退化研究2009-07-18~!
研究了液化砂层桶形基础在等效动冰荷载等循环荷载作用下的承载力退化问题。根据动态离心实验结果,建立了液化砂层的简化数值模型。将冰激动力荷载模型化为等效正弦循环荷载,研究了砂层不同位置的液化程度及主要影响因素的影响。然后,用非耦合的非线性砂弹簧来表示砂阻力,描述了局部砂阻力的次破坏行为以及桶形基础在某种破坏准则下的峰值承载力。确定了液化砂层中桶形基础的承载力,分析了承载力退化的规律。分析了液化砂层与非液化砂层的容量退化情况。结果表明:液化砂层顶部液化度为0.9,底部液化度仅为0.06;数值计算结果与离心实验结果吻合较好。数值模拟的斗容量衰减值为12%,而离心实验的斗容量衰减值为17%。
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