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Relevant data-based approach upon reliable safety factor for pile axial capacity

机译:基于桩轴向承载力可靠安全系数的相关数据方法

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摘要

Abstract Pile foundations are one of the significant marine substructure systems for a variety of offshore and onshore facilities. Thus, optimum and reliable design during their lifetime and under inherent uncertainties is noteworthy. Among various methods for predicting axial pile bearing capacity, cone penetration test (CPT)-based methods enhance geotechnical design to a more satisfying level due to continuous and reliable CPT records and their suitable performance in offshore environments. This article aims to reveal the importance of CPT and pile databases, especially in deltaic deposits. A new relevant CPT and pile data-based approach is introduced by assessing a few elaborated works on typical CPT and pile case studies. The proposed procedure assists in comparing the characteristics and conditions of a given pile with similar database cases through screening and, consequently, deciding on the design methods' priority. It is depicted that superior methods result in a more reliable design and higher resistance factors and efficiency ratios in load and resistance factor design (LRFD). Accordingly, it is engaged with lowered safety factors in the allowable stress design (ASD) approach. Eventually, upon various assessment criteria, the optimum site-specific methods are proposed leading to a performance-based design that can be realized in geotechnical practice.
机译:摘要 桩基是各种海上和陆上设施中重要的海洋下部结构系统之一。因此,在其生命周期内和固有的不确定性下,最佳和可靠的设计是值得注意的。在预测轴向桩承载力的各种方法中,基于锥探入试验(CPT)的方法由于连续可靠的CPT记录及其在海上环境中的适用性能,将岩土工程设计提升到更令人满意的水平。本文旨在揭示 CPT 和桩数据库的重要性,尤其是在三角洲矿床中。通过评估一些关于典型 CPT 和桩案例研究的详细工作,引入了一种新的相关的 CPT 和桩数据方法。所提出的程序有助于通过筛选将给定桩的特征和条件与类似的数据库案例进行比较,从而决定设计方法的优先级。结果表明,在负载和电阻因子设计 (LRFD) 中,更好的方法可带来更可靠的设计以及更高的电阻系数和效率比。因此,它在容许应力设计 (ASD) 方法中降低了安全系数。最终,根据各种评估标准,提出了针对特定场地的最佳方法,从而实现了可以在岩土工程实践中实现的基于性能的设计。

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