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Evaluation of synthetic and recorded ground motions for soil liquefaction analyses

机译:土壤液化分析的合成和记录地面运动评价

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摘要

In performance-based earthquake engineering, simulated earthquake ground motions are often generated for time history analyses of structures and geotechnical systems. Liquefaction refers to dramatic loss of stiffness and strength of soils during earthquake shaking. As a complicated nonlinear process associated with accumulation of excessive pore pressure and decrease of effective stress due to soil-fluid interaction, whether synthetic motions can be appropriately used in liquefaction assessment still remains a grand challenge. In this study, various synthetic ground motions are generated using different simulation techniques, whose performances are compared with real recorded motions through nonlinear time history analyses of liquefiable grounds with different soil densities and ground inclinations. One-to-one comparison of results in this study clearly demonstrates the importance of preserving accumulative intensity measures of synthetic motions in liquefaction assessment. Strong linear relationships are also found in a log-log space between the maximum ground displacement and evolutionary Arias intensity during post-liquefaction stage for different liquefiable grounds, and the predictive relationships seem not to be affected by the types of synthetic ground motions.
机译:在基于性能的地震工程中,模拟地震地面运动通常为结构历史分析的结构和岩土系统。液化是指地震摇动期间土壤刚度和强度的急剧丧失。作为与过量孔隙压力的积累相关的复杂的非线性过程和由于土壤流体相互作用导致的有效应力的降低,是否可以在液化评估中适当地使用合成运动仍然是一个大挑战。在该研究中,使用不同的仿真技术产生各种合成接地运动,其性能与通过具有不同土壤密度和地面倾斜的液化基因的非线性时间历史分析的实际记录的运动进行比较。本研究结果的一对一比较清楚地展示了保留液化评估中的综合运动累积强度措施的重要性。在不同的液化理由后最大地面位移和进化阶段之间的最大地面位移和进化arias强度之间的日志记录空间中也发现了强的线性关系,并且预测性关系似乎不受合成地面运动类型的影响。

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