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Risk-based target reliability indices for quay walls

机译:基于风险的码头墙目标可靠性指标

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Design codes and standards rely on generalised target reliability indices. It is unclear, however, whether these indices are applicable to the specific risk-profile of marine structures. In this study, target reliability indices for quay walls were derived from various risk acceptance criteria, such as economic optimisation, individual risk (IR), societal risk (SR), the life quality index (LQI) and the social and environmental repercussion index (SERI). Important stochastic design variables in quay wall design, such as retaining height, soil strength and material properties, are largely time-independent, whereas other design variables are time-dependent. The extent to which a reliability problem is time variant affects the present value of future failure costs and the associated reliability optimum. A method was therefore developed to determine the influence of time-independent variables on the development of failure probability over time. This method can also be used to evaluate target reliability indices of other civil and geotechnical structures. The target reliability indices obtained for quay walls depend on failure consequences and marginal costs of safety investments. The results were used to elaborate the reliability framework of ISO 2394, and associated reliability levels are proposed for various consequence classes. The insights acquired were used to evaluate the acceptable probability of failure for different types of quay walls.
机译:设计规范和标准依赖于广义目标可靠性指标。但是,尚不清楚这些指数是否适用于海洋结构的特定风险状况。在这项研究中,码头墙的目标可靠性指标来自各种风险接受标准,例如经济优化,个人风险(IR),社会风险(SR),生活质量指数(LQI)以及社会和环境影响指数( SERI)。码头墙设计中的重要随机设计变量(例如保持高度,土壤强度和材料特性)在很大程度上与时间无关,而其他设计变量与时间有关。可靠性问题随时间变化的程度会影响未来故障成本的现值和相关的可靠性最佳值。因此,开发了一种确定时间无关变量对故障概率随时间发展的影响的方法。该方法还可用于评估其他土木和岩土结构的目标可靠性指标。码头墙获得的目标可靠性指标取决于故障后果和安全投资的边际成本。结果被用来阐述ISO 2394的可靠性框架,并为各种后果等级提出了相关的可靠性等级。获得的见解用于评估不同类型码头壁的可接受的失效概率。

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