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首页> 外文期刊>ScientificWorldJournal >Examination of the Behavior of Gravity Quay Wall against Liquefaction under the Effect of Wall Width and Soil Improvement
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Examination of the Behavior of Gravity Quay Wall against Liquefaction under the Effect of Wall Width and Soil Improvement

机译:墙壁宽度与土壤改善作用下重力Quay墙对液化的行为

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摘要

Deformation of quay walls is one of the main sources of damage to port facility while liquefaction of backfill and base soil of the wall are the main reasons for failures of quay walls. During earthquakes, the most susceptible materials for liquefaction in seashore regions are loose saturated sand. In this study, effects of enhancing the wall width and the soil improvement on the behavior of gravity quay walls are examined in order to obtain the optimum improved region. The FLAC 2D software was used for analyzing and modeling progressed models of soil and loading under difference conditions. Also, the behavior of liquefiable soil is simulated by the use of “Finn” constitutive model in the analysis models. The “Finn” constitutive model is especially created to determine liquefaction phenomena and excess pore pressure generation.
机译:码头墙的变形是港口设施损坏的主要源之一,而墙壁回填和底土的液化是码头墙壁故障的主要原因。在地震期间,海滨区液化最易感材料是松散的饱和砂。在该研究中,检查了增强壁宽度和土壤改善对重力码头壁的行为的影响,以获得最佳改进区域。 FLAC 2D软件用于分析和建模进展模型的土壤和差异条件下的载荷。而且,通过在分析模型中使用“芬兰”本构模型来模拟液化土的行为。特别是“芬兰”构成模型以确定液化现象和过量的孔隙压力产生。

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