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Sensitivity analysis and its role in pseudo-static design of pile foundations

机译:敏感性分析及其在桩基础拟静力设计中的作用

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摘要

Lateral spreading, a phenomenon associated with earthquake-induced soil liquefaction, can impose large lateral demands on piles and has been responsible for the failure of many foundations. One of the key issues in the simplified analysis of piles using the pseudo-static approach is how to deal with the uncertainties associated with soil liquefaction and lateral spreading, an understanding of which is necessary for the consistent and reliable use of these methods in practice. In this paper a comprehensive series of analyses is used to examine the parametric sensitivity of the pile response for a broad range of soil-pile systems and magnitudes of lateral spreading displacement. The parametric sensitivity results clearly demonstrate the fundamental link between the relative importance of the various model parameters and the mechanism of soil-pile interaction, with soil strength-related parameters most important in the case of 'stiff pile behaviour, and soil stiffness-related parameters in the case of 'flexible' pile behaviour. The SPT blowcount, N, in particular was arguably the most influential parameter given the magnitude of its uncertainty, and its use in determination of the stiffness and strength of soil.
机译:横向扩展是与地震引起的土壤液化有关的一种现象,可能对桩施加较大的横向要求,并导致了许​​多地基的破坏。使用拟静力方法简化桩的简化分析中的关键问题之一是如何处理与土壤液化和横向扩展相关的不确定性,要在实践中一致,可靠地使用这些方法,必须理解这些不确定性。在本文中,使用了一系列综合分析来检验各种土桩系统和横向扩展位移量的桩响应的参数敏感性。参数敏感性结果清楚地表明了各种模型参数的相对重要性与土-桩相互作用机制之间的根本联系,其中,在“刚桩行为”的情况下,与土强度有关的参数最为重要,而与土刚度有关的参数最为重要在“灵活”桩行为的情况下。考虑到不确定性的大小以及在确定土壤的刚度和强度方面的应用,SPT打击量N可以说是最具影响力的参数。

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