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Effects of scour-hole dimensions on lateral behavior of piles in sands

机译:冲孔尺寸对砂土桩侧向性状的影响

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Scour is a process of soil erosion around foundations caused by currents and waves, which can severely compromise the performance of the foundations. The scour process forms a scour hole around the foundation. The existence of the scour hole has been considered by many design standards for pile foundations such as those from the US Federal Highway Administration (FHWA) and American Petroleum Institute (API). However, these standards recommend different procedures to evaluate lateral responses of piles subjected to local scour that forms three dimensions of scour hole. This paper presents a series of three-dimensional finite element (FE) parametric analyses to examine the feasibility of the standard methods (FHWA and API) as well as an analytical solution proposed by the authors through varying scour-hole dimensions, soil properties, and pile properties. The results showed that the analytical solution provided conservative results while the standard methods provided mixed results compared with the FE analyses. The loss of pile lateral capacity due to scour was more significant in dense sands than in loose sands (approximately 10% more). For a given relative scour depth, the increase in pile diameter increased the scour-induced loss of pile lateral capacity.
机译:冲刷是由水流和波浪引起的地基周围水土流失的过程,会严重损害地基的性能。冲刷过程在基础周围形成一个冲刷孔。冲孔的存在已被许多桩基设计标准所考虑,例如美国联邦公路管理局(FHWA)和美国石油学会(API)的设计标准。但是,这些标准建议采用不同的程序来评估承受局部冲刷(形成冲刷孔的三个维度)的桩的横向响应。本文提出了一系列三维有限元(FE)参数分析,以检验标准方法(FHWA和API)的可行性以及作者通过改变冲孔尺寸,土壤性质和强度提出的分析解决方案桩性能。结果表明,与有限元分析相比,分析溶液提供了保守的结果,而标准方法提供了混合结果。在高密度砂土中,由于冲刷造成的桩侧向能力损失比在松散砂土中更为明显(多出约10%)。对于给定的相对冲刷深度,桩直径的增加会增加冲刷引起的桩侧向承载力的损失。

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