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Non-linear response of the rockfill in a concrete-faced rockfill dam under seismic excitation

机译:地震激励下面板混凝土堆石坝堆石料的非线性响应

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This study investigates the non-linear response of the rockfill in a concrete-faced rockfill dam under seismic excitation for various concrete slab thicknesses from 30 to 100cm thick. The effect of the friction in the concrete slab rockfill interface on the non-linear response of the rockfill is also considered in the numerical solutions. The friction contact in the concrete slab joints is provided with contact elements based on the Coulomb's friction law. The hydrodynamic pressure of the reservoir water is considered by the fluid finite elements based on the Lagrangian approach. Geometrical and material non-linear behaviours of the dam-foundation-reservoir interaction system are considered together in the finite element analyses. The Drucker-Prager model is used to obtain materially non-linear behaviour of the concrete slab. The multi linear kinematic hardening model is used for rockfill and foundation rock in the material non-linear analyses. Therefore, the uniaxial stress-strain relations of the rockfill and foundation rock are determined from the shear stress-shear strain relations of the gravel and rock, respectively. The principle compressive and tensile stresses of the rockfill are investigated along the horizontal section of the rockfill. According to numerical analyses, the most critical stresses occur in the upstream and downstream faces of the dam for the concrete slab thickness of 30cm, while the optimum thickness for seismic performance is 58 cm.
机译:这项研究研究了在地震激励下,对于厚度为30至100cm的各种混凝土板,堆石坝中堆石料的非线性响应。在数值解中还考虑了混凝土板堆石界面中的摩擦力对堆石非线性响应的影响。根据库仑摩擦定律,混凝土平板节点的摩擦接触具有接触元件。基于拉格朗日方法的流体有限元考虑了储层水的水动力压力。在有限元分析中综合考虑了大坝-基础-水库相互作用系统的几何和材料非线性行为。 Drucker-Prager模型用于获得混凝土板的材料非线性行为。在材料非线性分析中,将多线性运动硬化模型用于堆石和基础岩石。因此,分别由砾石和岩石的剪切应力-剪切应变关系来确定堆石和基础岩石的单轴应力-应变关系。沿堆石料的水平截面研究堆石料的主要压应力和拉应力。根据数值分析,对于30厘米厚的混凝土板,最大的临界应力发生在坝的上游和下游面,而抗震性能的最佳厚度为58厘米。

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