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Modelling the behaviour of large gravity wharf structure under the effects of earthquake-induced liquefaction

机译:地震液化作用下大型重力码头结构的行为模拟

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摘要

Gravity Wharf Structures are widely used worldwide to form shallow and deep water ports. They are large structures with a height of 25-50 m depending on the water depth. When these structures are to be sited on loose to medium dense sand, earthquake induced liquefaction settlements present a significant risk. This often requires expensive soil replacement or other ground improvement techniques. In this paper, the dynamic behaviour of these large structures that exert very high bearing pressures on the foundation soil was investigated for the first time. The level of settlements they can suffer due to soil liquefaction was investigated using dynamic centrifuge testing. It will be shown that the full liquefaction does not occur below the structure even when the free field soil fully liquefies during strong earthquakes. However there will be some stiffness degradation owing to excess pore pressure generation and consequent structural settlements. The level of these settlements are considered to be acceptable from a Service Limit State (SLS) perspective. In addition to this the hydro-dynamic pressures that act on the Gravity Wharf structure were also investigated.
机译:重力码头结构在世界范围内广泛用于形成浅水和深水港口。它们是大型结构,其高度根据水深为25-50 m。当将这些结构放置在松散至中等密度的沙子上时,地震引起的液化沉降会带来很大的风险。这通常需要昂贵的土壤置换或其他地面改良技术。本文首次研究了这些在基础土壤上施加很高承载压力的大型结构的动力特性。使用动态离心试验研究了由于土壤液化而可能遭受的沉降水平。结果表明,即使在强地震中自由场土壤完全液化,在结构下方也不会发生完全液化。然而,由于产生过多的孔隙压力和随之而来的结构沉降,会导致一些刚度下降。从服务限制状态(SLS)的角度来看,这些结算的级别被认为是可以接受的。除此之外,还研究了作用在重力码头结构上的水动力压力。

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