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Probabilistic Risk Assessment: Piping Fragility due to Earthquake Fault Mechanisms

机译:概率风险评估:地震故障机制导致的管道脆弱性

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摘要

A lifeline system, serving as an energy-supply system, is an essential component of urban infrastructure. In a hospital, for example, the piping system supplies elements essential for hospital operations, such as water and fire-suppression foam. Such nonstructural components, especially piping systems and their subcomponents, must remain operational and functional during earthquake-induced fires. But the behavior of piping systems as subjected to seismic ground motions is very complex, owing particularly to the nonlinearity affected by the existence of many connections such as T-joints and elbows. The present study carried out a probabilistic risk assessment on a hospital fire-protection piping system's acceleration-sensitive 2-inch T-joint sprinkler components under seismic ground motions. Specifically, the system's seismic capacity, using an experimental-test-based nonlinear finite element (FE) model, was evaluated for the probability of failure under different earthquake-fault mechanisms including normal fault, reverse fault, strike-slip fault, and near-source ground motions. It was observed that the probabilistic failure of the T-joint of the fire-protection piping system varied significantly according to the fault mechanisms. The normal-fault mechanism led to a higher probability of system failure at locations 1 and 2. The strike-slip fault mechanism, contrastingly, affected the lowest fragility of the piping system at a higher PGA.
机译:作为能源供应系统的生命线系统是城市基础设施的重要组成部分。例如,在医院中,管道系统会提供医院操作必不可少的元件,例如水和灭火泡沫。这种非结构性组件,尤其是管道系统及其子组件,在地震引发的火灾期间必须保持运行和功能。但是,由于受到诸如T型接头和弯头之类的许多连接的存在的非线性影响,管道系统在地震地震动下的行为非常复杂。本研究对地震地震作用下医院消防管道系统的加速度敏感型2英寸T型接头洒水喷头组件进行了概率风险评估。具体而言,使用基于实验测试的非线性有限元(FE)模型评估了系统的抗震能力,以评估在不同地震断层机制(包括正常断层,反向断层,走滑断层和近地震断层)下的失效概率源地震动。观察到,消防管道系统T形接头的概率故障根据故障机制而有显着变化。正常故障机制导致在位置1和2处系统出现故障的可能性更高。相比之下,走滑故障机制在较高的PGA下影响了管道系统的最低脆弱性。

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  • 来源
    《Mathematical Problems in Engineering 》 |2015年第10期| 525921.1-525921.8| 共8页
  • 作者单位

    N Carolina State Univ, Dept Civil Engn, Raleigh, NC 27695 USA.;

    Gangneung WonJu Natl Univ, Dept Civil Engn, Kangnung 210702, South Korea.;

    POSCO, Steel Solut Ctr, Inchon 406840, South Korea.;

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