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首页> 外文期刊>Soil Dynamics and Earthquake Engineering >Seismic cracking evolution for anti-seepage face slabs in concrete faced rockfill dams based on cohesive zone model in explicit SBFEM-FEM frame
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Seismic cracking evolution for anti-seepage face slabs in concrete faced rockfill dams based on cohesive zone model in explicit SBFEM-FEM frame

机译:基于SBFEM-FEM框架的粘结面模型的面板堆石坝防渗面板地震裂缝演化。

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It is critically importance to accurately locate vulnerable areas and quantitatively assess the damage of the face slab in the seismic safety evaluation of concrete faced rockfill dams (CFRDs). In this paper, the cohesive zone model (CZM) is augmented with generalized plastic models of the rockfill and state-dependent elasto-plastic model of the interface to investigate the seismic cracking evolution in the slab of CFRDs. An explicit coupled scaled boundary finite element method-finite element method (Explicit SBFEM-FEM) is developed to enable cross-scale analysis. The method considers the strain softening of rockfill and concrete after being damaged, and avoids negative stiffness and convergence problems that can be found during implicit analysis. A fine, cross-scale model of the CFRD is established based on the quadrature technique. Subsequently, simulations of the construction and impoundment processes are performed to facilitate dynamic analysis. In the first step, different damping ratios for the slab are simulated to optimize accuracy and efficiency. Then, the seismic cracking evolution of the slab is investigated in detail with consideration to the ground motion intensity and steel reinforcement. The results indicate that the computational efficiency can be significantly improved by decreasing the damping ratio of the concrete face slab in the explicit seismic analysis. Penetrating cracks are observed on the slab and the crack reaches maximum width during the earthquake. A residual width is retained after the earthquake. The simulated failure mode of face slab conforms to the characteristics of concrete. The developed method can help precisely locate weak areas of face slab, quantitatively determine the damage severity, and evaluate the ultimate seismic performance of the slab in the CFRDs. In addition, the method can be further employed for concrete cracking analysis involving soil-concrete interaction.
机译:在混凝土面板堆石坝(CFRD)的抗震安全性评估中,准确定位脆弱区域并定量评估面板的损伤至关重要。本文通过用堆石料的广义塑性模型和界面的状态依赖的弹塑性模型扩充了粘聚区模型(CZM),以研究CFRD平板中的地震裂缝演化。开发了显式耦合比例边界有限元方法-有限元方法(Explicit SBFEM-FEM)以进行跨尺度分析。该方法考虑了破坏后堆石和混凝土的应变软化,避免了在隐式分析中会发现负刚度和收敛问题。基于正交技术,建立了CFRD的精细跨尺度模型。随后,对施工和蓄水过程进行了模拟,以促进动态分析。第一步,模拟平板的不同阻尼比,以优化精度和效率。然后,考虑地震动强度和钢筋,对平板的地震裂缝演化进行了详细的研究。结果表明,在显式地震分析中,减小混凝土面板的阻尼比可以显着提高计算效率。在平板上观察到穿透裂纹,并且在地震期间裂纹达到最大宽度。地震后保留剩余宽度。面板的模拟破坏模式符合混凝土的特性。所开发的方法可以帮助精确定位面板的薄弱区域,定量确定损伤的严重程度,并评估面板在CFRD中的极限抗震性能。另外,该方法可以进一步用于涉及土-混凝土相互作用的混凝土开裂分析。

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