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Development of fragility functions for geotechnical constructions: Application to cantilever retaining walls

机译:用于岩土工程的脆弱性功能的开发:在悬臂式挡土墙中的应用

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Fragility curves constitute an emerging tool for the seismic risk assessment of all constructions at risk. They describe the probability of a structure being damaged beyond a specific damage state for various levels of ground shaking. They are usually represented as two-parameter (median and log-standard deviation) cumulative lognormal distributions. In this paper a numerical approach is proposed for the construction of fragility curves for geotechnical constructions. The methodology is applied to cantilever bridge abutments on surface foundation often used in road and railway networks. The response of the abutment to increasing levels of seismic intensity is evaluated using a 2D nonlinear FE model, with an elasto-plastic criterion to simulate the soil behavior. A calibration procedure is followed in order to account for the dependency of both the stiffness and the damping on the soil strain level. The effect of soil conditions and ground motion characteristics on the global soil and structural response is taken into account considering different typical soil profiles and seismic input motions. The objective is to assess the vulnerability of the road network as regards the performance of the bridge abutments; therefore, the level of damage, is described in terms of the range of settlement that is observed on the backfill. The effect of backfill material to the overall response of the abutment wall is also examined. The fragility curves are estimated based on the evolution of damage with increasing earthquake intensity. The proposed approach allows the evaluation of new fragility curves considering the distinctive features of the structure geometry, the input motion and the soil properties as well as the associated uncertainties. The proposed fragility curves are verified based on observed damage during the 2007 Niigata-Chuetsu Oki earthquake.
机译:易碎性曲线构成了用于评估所有处于危险中的建筑的地震风险的新兴工具。他们描述了对于各种水平的地面震动,超过特定损坏状态的结构损坏的可能性。它们通常表示为两参数(中位数和对数标准偏差)累积对数正态分布。本文提出了一种数值方法来构造岩土工程中的脆性曲线。该方法适用于经常在公路和铁路网络中使用的地基上的悬臂桥基台。使用2D非线性有限元模型评估桥台对地震强度不断增加的响应,并采用弹塑性准则模拟土壤行为。为了考虑刚度和阻尼对土壤应变水平的依赖性,遵循校准程序。考虑到不同的典型土壤剖面和地震输入运动,考虑了土壤条件和地面运动特征对全球土壤和结构响应的影响。目的是就桥梁桥台的性能评估道路网的脆弱性;因此,根据在回填处观察到的沉降范围来描述损坏程度。还检查了回填材料对基台壁整体响应的影响。脆性曲线是根据破坏程度随地震强度的增加而估算的。所提出的方法允许考虑结构几何的独特特征,输入运动和土壤特性以及相关的不确定性来评估新的脆性曲线。拟议的脆性曲线是根据2007年新泻县中冲冲地震期间观测到的破坏进行验证的。

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