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首页> 外文期刊>Journal of Marine Science and Engineering >Scour Effects on the Lateral Behavior of a Large-Diameter Monopile in Soft Clay: Role of Stress History
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Scour Effects on the Lateral Behavior of a Large-Diameter Monopile in Soft Clay: Role of Stress History

机译:冲刷对软黏土中大直径单桩的横向行为的影响:应力历史的作用

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Scouring of soil around large-diameter monopile will alter the stress history, and therefore the stiffness and strength of the soil at shallow depth, with important consequence to the lateral behavior of piles. The existing study is mainly focused on small-diameter piles under scouring, where the soil around a pile is analyzed with two simplified approaches: (I) simply removing the scour layers without changing the strength and stiffness of the remaining soils, or (II) solely considering the effects of stress history on the soil strength. This study aims to investigate and quantify the scour effect on the lateral behavior of monopile, based on an advanced hypoplastic model considering the influence of stress history on both soil stiffness and strength. It is revealed that ignorance about the stress history effect (due to scouring) underestimates the extent of the soil failure wedge around the monopile, while overestimates soil stiffness and strength. As a result, a large-diameter pile (diameter D = 5 m) in soft clay subjected to a souring depth of 0.5 D has experienced reductions in ultimate soil resistance and initial stiffness of the p-y curves by 40% and 26%, and thus an increase of pile head deflection by 49%. Due to the inadequacy to consider the stress history effects revealed above, the existing approach (I) has led to non-conservative estimation, while the approach (II) has resulted in an over-conservative prediction.
机译:大直径单桩周围的土壤冲刷会改变应力历史,从而改变浅层土壤的刚度和强度,这对桩的侧向性能具有重要影响。现有研究主要集中在冲刷下的小直径桩上,其中通过两种简化方法分析桩周围的土壤:(I)仅去除冲刷层而不改变剩余土壤的强度和刚度,或(II)仅考虑应力历史对土壤强度的影响。本研究旨在基于考虑到应力历史对土壤刚度和强度的影响的高级塑性模型,研究和量化冲刷对单桩侧向行为的影响。结果表明,对应力历史效应(由于冲刷)的无知,低估了单桩周围土体破坏的程度,而高估了土壤的刚度和强度。结果,软土中的大直径桩(直径D = 5 m)经受了0.5 D的浸润深度,其极限抗污性和py曲线的初始刚度分别降低了40%和26%,因此桩头挠度增加了49%。由于不足以考虑上述应力历史影响,现有方法(I)导致了非保守估计,而方法(II)导致了过度保守的预测。

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