论文标题
最佳监控位置,用于跟踪岩土技术系统的风险:理论和应用开挖风险
Optimal monitoring location for risk tracking of geotechnical systems: theory and application to tunneling excavation risks
论文作者
论文摘要
结构健康监测技术的成熟度为岩土结构和地下基础设施系统带来了不断增加的机会,以跟踪结构性故障的风险,例如基于监视的数据,例如沉降引起的建筑物损害。可靠性更新技术可以提供解决方案,以估算未能使用包括平等和不平等的各种信息来满足规定目标的可能性。但是,可靠性更新可能对监视位置高度敏感。因此,在系统中可能存在最佳位置以监视可靠性更新的最大值。本文提出了一个计算框架,用于基于一种称为“灵敏度的信息(SOI)”的创新度量的最佳监视位置,该指标量化了无条件和条件可靠性指数的相对变化。深入探讨了隧道引起的建筑物造成的定居点带来的最先进的风险案例,以证明和评估拟议框架的计算效率。
The maturity of structural health monitoring technology brings ever-increasing opportunities for geotechnical structures and underground infrastructure systems to track the risk of structural failure, such as settlement-induced building damage, based on the monitored data. Reliability updating techniques can offer solutions to estimate the probability of failing to meet a prescribed objective using various types of information that are inclusive of equality and inequality. However, the update in reliability can be highly sensitive to monitoring location. Therefore, there may exist optimal locations in a system for monitoring that yield the maximum value for reliability updating. This paper proposes a computational framework for optimal monitoring location based on an innovative metric called sensitivity of information (SOI) that quantifies the relative change in unconditional and conditional reliability indexes. A state-of-the-practice case of risks posed by tunneling-induced settlement to buildings is explored in-depth to demonstrate and evaluate the computational efficiency of the proposed framework.