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Seismic performance of a pile-supported wharf: Three-dimensional finite element simulation

机译:桩基码头的抗震性能:三维有限元模拟

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摘要

Considerable three-dimensional (3D) effects are involved in the seismic performance of pile-supported wharves. Such effects include the pile-to-pile interaction mechanisms as dictated by the behavior of the surrounding soil. This interaction might be further affected by potential ground slope settlement/heave, and the constraint of pile connectivity along the relatively rigid wharf deck. In order to capture a number of these salient response characteristics, a 3D finite element (FE) study is conducted herein. The prototype system motivating this study is presented, along with the corresponding numerical details. A realistic multi-layer soil profile is considered, with interbedded relatively soft/stiff strata. Effect of the resulting seismically-induced ground deformation on the pile-supported wharf system is explored. Specific attention is drawn to the noteworthy potential changes in axial force due to variation in pile embedment depth, and the ground slope deformation. The analysis technique as well as the derived insights are of significance to general pile-wharf-ground system configurations.
机译:桩支撑码头的抗震性能涉及相当大的三维(3D)效应。这样的影响包括桩土之间的相互作用机制,这取决于周围土壤的行为。潜在的地面坡度沉降/起伏,以及沿相对刚性的码头甲板的桩连接性的约束,可能进一步影响这种相互作用。为了捕获这些显着响应特性中的许多,本文进行了3D有限元(FE)研究。提出了激励该研究的原型系统,以及相应的数值细节。考虑到一个现实的多层土壤剖面,并夹有相对较软/较硬的地层。探索了由地震引起的地面变形对桩支撑码头系统的影响。特别要注意的是,由于桩埋深的变化和地面坡度变形,轴向力可能会发生显着变化。分析技术以及得出的见解对一般桩码头地面系统配置具有重要意义。

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