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Liquefaction potential evaluations by energy-based method and stress-based method for various ground motions

机译:通过基于能量的方法和基于应力的方法对各种地面运动的液化潜力进行评估

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摘要

An energy-based liquefaction potential evaluation method (EBM) previously developed was applied to a uniform sand model shaken by seismic motions recorded at different sites during different magnitude earthquakes. It was also applied to actual liquefaction case histories in Urayasu city during the 2011 M9.0 Tohoku earthquake and in Tanno-cho during the 2003 M8.0 Tokachi-oki earthquake. In all these evaluations, the results were compared with those by the currently used stress-based method (SBM) under exactly the same seismic and geotechnical conditions. It was found that EBM yields similar results with SBM for several ground motions of recent earthquakes but has easier applicability without considering associated parameters. In Urayasu city, the two methods yielded nearly consistent results by using an appropriate coefficient in SBM for the M9.0 earthquake, though both overestimated the actual liquefaction performance, probably because effects of plasticity and aging on in situ liquefaction strength were not taken into account. In Tanno-cho, EBM could evaluate actual liquefaction performance due to a small-acceleration motion during a far-field large magnitude earthquake while SBM could not. (C) 2015 Elsevier Ltd. All rights reserved.
机译:先前开发的基于能量的液化潜力评估方法(EBM)被应用于在不同震级下记录在不同地点的地震运动引起的均匀砂土模型。它也适用于2011年M9.0东北地震期间浦安市和2003年M8.0十胜冲井地震期间天乃町的实际液化案例历史。在所有这些评估中,将结果与在完全相同的地震和岩土条件下与当前使用的基于应力的方法(SBM)进行了比较。发现在最近地震的几次地面运动中,EBM的结果与SBM相似,但在不考虑相关参数的情况下具有更容易的适用性。在浦安市,两种方法通过在M9.0地震中使用适当的SBM系数获得了几乎一致的结果,尽管两者都高估了实际的液化性能,这可能是因为未考虑可塑性和老化对原地液化强度的影响。在天野町,EBM可以评估远场大地震中的小加速度运动引起的实际液化性能,而SBM则不能。 (C)2015 Elsevier Ltd.保留所有权利。

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