Hazard Curves for Reliability Assessment of Strip Footings on Spatially Varying Cohesive Soils

A. Mert, G. Yazici, Hadi KHAN BABA ZADEH
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Abstract

The present study aimed to create a series of hazard curves against maximum total settlement and angular rotation of strip footings for probabilistic shallow foundation design on clays. Random field finite element method (RFEM) was adopted with elasto-plastic clay-like soil behavior, deformation modulus (Ed) and shear strength parameters (c and ) were employed as random field inputs. Parameters were defined and assigned to the analysis models with varying correlation lengths (h, v). Models have been iteratively solved one thousand times, and output distributions of maximum settlement and angular rotations were recorded. Probability density functions (PDF) were fitted to the outputs, and probability of failure (Pf) for footing deformation limits was subsequently estimated. Proposed hazard curves for two anisotropy and three variability categories were developed employing the estimated Pfs. The method proposed has been validated using an independent database of in-situ results, and a worked example was provided to illustrate the implementation of the process. The key contribution of the research is to form hazard curves for shallow foundations considering elasto-plastic soil behavior with the impact of all influencing parameters, respecting the limit values for foundation deformation in the design codes. The proposed technique offers a probabilistic evaluation of strip footings with spatial variation of clayey soils and a valid method for the reliability-based design of foundations in the serviceability limit state.
空间变化黏性土上条形基础可靠度评估的危险曲线
本研究旨在建立一系列的危险曲线对最大总沉降和角旋转的概率浅基础设计的条形基础在粘土上。采用随机场有限元法(RFEM)分析弹塑性类粘土土的特性,以变形模量(Ed)和抗剪强度参数(c和↓)作为随机场输入。参数被定义并分配给具有不同相关长度的分析模型。模型迭代求解了1000次,记录了最大沉降和角旋转的输出分布。将概率密度函数(PDF)拟合到输出中,然后估计出基础变形极限的破坏概率(Pf)。利用估计的Pfs,提出了两种各向异性和三种变异性类别的风险曲线。利用独立的现场结果数据库对所提出的方法进行了验证,并提供了一个工程实例来说明该过程的实现。本研究的关键贡献在于,在尊重设计规范中基础变形限值的前提下,考虑各影响参数对浅基础弹塑性特性的影响,形成浅基础的危险曲线。该方法为考虑粘性土空间变化的条形基础提供了一种概率评估方法,并为在使用极限状态下的基础可靠度设计提供了一种有效方法。
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CiteScore
1.70
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