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Seismic performance of a 1:15-scale 25-story RC flat-plate core-wall building model

机译:1:15比例的25层RC平板型核心墙建筑模型的抗震性能

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Earthquake simulation tests were conducted on a 1:15-scale 25-story building model to verify the seismic performance of high-rise reinforced-concrete flat-plate core-wall building structures designed per the recent seismic code KBC 2009 or IBC 2006. The following conclusions can be drawn from the test results: (1) The vertical distribution of acceleration during the table excitations revealed the effect of the higher modes, whereas free vibration after the termination of the table excitations was governed by the first mode. The maximum values of base shear and roof drift during the free vibration are either similar to or larger than the values of the maximum responses during the table excitation. (2) With a maximum roof drift ratio of 0.7% under the maximum considered earthquake in Korea, the lateral stiffness degraded to approximately 50% of the initial stiffness. (3) The crack modes appear to be a combination of flexure and shear in the slab around the peripheral columns and in the coupling beam. Energy dissipation via inelastic deformation was predominant during free vibration after the termination of table excitation rather than during table excitation. Finally, (4) the walls with special boundary elements in the first story did not exhibit any significant inelastic behavior, with a maximum curvature of only 21% of the ultimate curvature, corresponding to an ultimate concrete compressive strain of 0.00638m/m intended in the displacement-based design approach. Copyright (c) 2014 John Wiley & Sons, Ltd.
机译:在以1:15比例缩放的25层建筑模型上进行了地震模拟测试,以验证根据最新的地震法规KBC 2009或IBC 2006设计的高层钢筋混凝土平板型核心墙建筑结构的抗震性能。从测试结果可以得出以下结论:(1)工作台励磁过程中加速度的垂直分布揭示了较高模态的影响,而工作台励磁终止后的自由振动则由第一种模式控制。自由振动期间的基础剪力和屋顶位移的最大值与工作台激励期间的最大响应值相似或更大。 (2)在韩国考虑的最大地震下,最大车顶漂移率为0.7%,因此横向刚度降低到初始刚度的约50%。 (3)裂纹模式似乎是周围柱周围平板和耦合梁中弯曲和剪切的组合。在工作台激励结束后的自由振动过程中,而不是在工作台激励过程中,通过非弹性变形产生的能量耗散是主要的。最后,(4)在第一个故事中具有特殊边界元素的墙没有表现出任何明显的非弹性行为,最大曲率仅为极限曲率的21%,对应于预期的0.00638m / m的混凝土极限压缩应变。基于位移的设计方法。版权所有(c)2014 John Wiley&Sons,Ltd.

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