首页> 外文会议>ASME International Conference on Ocean, Offshore and Arctic Engineering >BEARING CAPACITIES OF SHALLOW SKIRTED FOUNDATIONS AFTER THE ACTION OF MULTI-DIRECTIONAL CYCLIC DISPLACEMENTS CONSIDERING SOIL DEGRADATION
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BEARING CAPACITIES OF SHALLOW SKIRTED FOUNDATIONS AFTER THE ACTION OF MULTI-DIRECTIONAL CYCLIC DISPLACEMENTS CONSIDERING SOIL DEGRADATION

机译:考虑土壤退化后多向循环位移作用后浅裙边基础的承载能力

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Shallow skirted foundations have been applied widely in ocean engineering. Under the action of external excitation, the shallow skirted foundations on soft soil undergo cyclic displacements during service state. Under the action of cyclic displacements, the foundations drive the surrounding soft soil to produce a continuous accumulation of absolute plastic shear strain, which weakens the shear strength of the soft soil around the foundations. Therefore, the bearing capacities of shallow skirted foundations reduce after the action of cyclic displacements considering soil degradation. In order to study the evolutions of bearing capacities of shallow skirted foundations after the action of multi-directional cyclic displacements considering soil degradation, the elastoplastic finite element models of shallow skirted foundations with different embedment ratio are established. Cyclic displacements are applied along different displacement loading paths, and the evolutions of soil shear strength and bearing capacities of shallow skirted foundations after the action of cyclic displacements are analyzed. The results show that the soil softening zone gradually expands from the stress concentration zone of the soft soil to the surrounds with increasing number of loading cycles. Due to the enlargement and weakening of the soil softening zone, the failure envelopes of shallow skirted foundations gradually shrink, but the shrinkage trend gradually converges with increasing number of loading cycles. The shapes of the failure envelopes are relatively less affected by the cyclic number of displacements. The size of the failure envelopes is greatly affected by the loading paths while the shape of the failure envelopes is relatively less affected.
机译:浅裙子基础已广泛应用于海洋工程。在外部刺激的作用下,软土浅裙边基础在服务状态期间经历循环位移。在循环移位的作用下,基础驱动周围的软土地,产生绝对塑料剪切菌株的连续积累,这削弱了基础周围软土的剪切强度。因此,考虑土壤降解的循环移位作用后,浅裙边基础的承载能力减少。为了在考虑土壤降解的多向循环移位作用后研究浅裙边基础的轴承容量的演变,建立了不同嵌入率的浅裙边基础的弹性塑性有限元模型。循环位移沿不同的位移负载路径应用,分析了循环位移作用后的浅裙边基础的土壤剪切强度和承载能力的演变。结果表明,随着越来越多的装载循环,土壤软化区逐渐从软土的应力集中区逐渐扩张。由于土壤软化区的扩大和弱化,浅裙边基础的故障包络逐渐收缩,但收缩趋势随着越来越多的装载循环而逐渐收敛。故障信封的形状受到循环次数的影响相对较小。故障信封的大小受到装载路径的大大影响,而故障包络的形状相对较小。

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