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Reliability analysis of circular reinforced concrete columns subject to sequential vehicular impact and blast loading

机译:连续车辆冲击和爆炸荷载作用下圆形钢筋混凝土柱的可靠度分析。

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This study investigates the first-order second-moment structural reliability of circular reinforced concrete (RC) bridge columns subjected to vehicular impact, explosive blast, and sequential vehicular impact and explosive blast loading. The analysis is performed for five vehicle types of increasing size, mass, and explosive charge capacity. The structural reliability under vehicular impact is shown to be highly sensitive to column diameter, reinforcement ratio, and vehicle velocity. The structural reliability under explosive blast loading is shown to be highly sensitive to column diameter, reinforcement ratio, and blast standoff distance. In general, the structural reliability is lower under explosive blast loading. The structural reliability under sequential loading is evaluated by the newly proposed resistance reduction method and by fault tree analysis. A resistance reduction factor for the second event is defined as a function of the probability of failure under the first event. The resistance reduction method is shown to be more conservative than fault tree analysis and has the added benefit of allowing for the derivation of the density function for performance under sequential loading.
机译:这项研究调查了圆形钢筋混凝土(RC)桥柱在受到车辆冲击,爆炸和连续车辆冲击与爆炸冲击荷载作用下的一阶第二阶结构可靠性。对尺寸,质量和爆炸装药量增加的五种车辆进行了分析。车辆撞击下的结构可靠性显示出对立柱直径,加强比和车速高度敏感。爆炸爆炸载荷下的结构可靠性显示出对立柱直径,增强比和爆炸对峙距离高度敏感。通常,在爆炸载荷下,结构可靠性较低。通过新提出的电阻降低方​​法和故障树分析来评估顺序载荷下的结构可靠性。将第二事件的电阻降低因子定义为第一事件下失败概率的函数。电阻降低方​​法显示出比故障树分析更为保守,并且具有允许导出密度函数以实现顺序加载下性能的额外好处。

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