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首页> 外文期刊>Bulletin of earthquake engineering >Optimal intensity measures for probabilistic seismic demand modeling of extended pile-shaft-supported bridges in liquefied and laterally spreading ground
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Optimal intensity measures for probabilistic seismic demand modeling of extended pile-shaft-supported bridges in liquefied and laterally spreading ground

机译:液化和横向扩散地延伸桩轴支撑桥概率抗震需求建模的最佳强度措施

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摘要

Seismic intensity measures (IMs) perform a pivotal role in probabilistic seismic demand modeling. Many studies investigated appropriate IMs for structures without considering soil liquefaction potential. In particular, optimal IMs for probabilistic seismic demand modeling of bridges in liquefied and laterally spreading ground are not comprehensively studied. In this paper, a coupled-bridge-soil-foundation model is adopted to perform an in-depth investigation of optimal IMs among 26 IMs found in the literature. Uncertainties in structural and geotechnical material properties and geometric parameters of bridges are considered in the model to produce comprehensive scenarios. Metrics such as efficiency, practicality, proficiency, sufficiency and hazard computability are assessed for different demand parameters. Moreover, an information theory based approach is adopted to evaluate the relative sufficiency among the studied IMs. Results indicate the superiority of velocity-related IMs compared to acceleration, displacement and time-related ones. In particular, Housner spectrum intensity (HI), spectral acceleration at 2.0 s (S (a-20)), peak ground velocity (PGV), cumulative absolute velocity (CAV) and its modified version (CAV (5)) are the optimal IMs. Conversely, Arias intensity (I (a) ) and shaking intensity rate (SIR) which are measures often used in liquefaction evaluation or related structural demand assessment demonstrate very low correlations with the demand parameters. Besides, the geometric parameters do not evidently affect the choice of optimal IMs. In addition, the information theory based sufficiency ranking of IMs shows an identical result to that with the correlation measure based on coefficient of determination (R (2)). This means that R (2) can be used to preliminarily assess the relative sufficiency of IMs.
机译:地震强度措施(IMS)在概率的地震需求建模中对枢转作用进行枢转作用。许多研究对结构进行了适当的IMS,而不考虑土壤液化潜力。特别地,没有全面研究液化和横向蔓延地桥梁桥梁的概率地震需求建模的最佳IMS。在本文中,采用耦合桥 - 土基础模型在文献中发现的26个IMS中对最佳IMS进行深入调查。在模型中考虑了结构和岩土材料性质的不确定性和桥梁的几何参数,以产生综合情景。评估不同需求参数的效率,实用性,熟练程度,充足性和危险性可计算性等度量。此外,采用了一种基于信息理论的方法来评估研究IMS之间的相对充足。结果表明与加速,位移和时间相关的相比速度相关IMS的优越性。特别地,屋顶谱强度(HI),在2.0S(A-20)),峰值接地速度(PGV),累积绝对速度(CAV)及其改进版本(CAV(5))中的光谱加速度是最佳的IM小号。相反,是液化评估或相关结构需求评估通常用于液化评估或相关结构需求评估的措施的arias强度(i(a))和摇动强度率(sir)表现出与需求参数非常低的相关性。此外,几何参数不会显着影响最佳IMS的选择。此外,基于IMS的信息理论的充足性等级显示了与基于确定系数的相关度(R(2))的相关性相同的结果。这意味着R(2)可用于初步评估IMS的相对充足性。

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