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Vulnerability and recovery time evaluation of an enhanced urban overpass foundation

机译:增强型城市立交桥基础的脆弱性和恢复时间评估

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This paper presents a vulnerability assessment and recovery time evaluation of two critical supports of a 23.5 km long urban overpass built in stiff soil, in the northeast Mexico City area. The evaluations were carried out considering both normal and subduction fault events expressed in terms of uniform hazard spectra for several return periods. Probabilistic site response analyses, and site specific numerically-derived fragility curves were used to assess the critical supports probability of reaching or exceeding a given damage state, considering two foundation types: a conventional raft foundation structurally connected to four precast-end bearing concrete piles, and a so-called enhanced massive foundation. The seismic response of each foundation system was characterized using series of 3-D finite elements models developed with the program SASSI2000 for increasing seismic intensity levels. The effect of both soil conditions and ground motion characteristics on the soil-structure system response was accounted for in the analyses. The damage index was defined in terms of earthquake induced transversal and longitudinal pier displacements, which was associated with column cracking, and potential loss of support of the upper deck. The vulnerability and reduction on recovery times for the foundation alternative was established.
机译:本文介绍了墨西哥城东北地区建在坚硬土壤中的一条23.5公里长的城市立交桥的两个关键支撑的脆弱性评估和恢复时间评估。评估时考虑了正常和俯冲断层事件,这些事件均以统一的危险谱表示,并返回了多个时间段。考虑了两种基础类型,使用了概率现场响应分析和特定于现场的数字派生脆性曲线来评估达到或超过给定破坏状态的关键支撑概率:结构上连接到四个预制端承重混凝土桩的常规筏式基础,以及所谓的增强型庞大基金会。每个基础系统的地震响应都使用一系列SASSI2000程序开发的3-D有限元模型来表征,以提高地震烈度。分析中考虑了土壤条件和地面运动特征对土壤-结构系统响应的影响。破坏指数是根据地震引起的横向和纵向桥墩位移来定义的,该位移与立柱开裂以及上层甲板支撑的潜在损失有关。确定了基础替代方案的脆弱性并缩短了恢复时间。

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