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Seismic performance evaluation of coupled core walls with concrete and steel coupling beams

机译:混凝土和钢制耦合梁耦合核心墙的抗震性能评估

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When coupling beams are proportioned appropriately in coupled core wall (CCW) systems, the input energy from ground motions is dissipated primarily through inelastic deformations in plastic hinge regions at the ends of the coupling beams. It is desirable that the plastic hinges form at the beam ends while the base wall piers remain elastic. The strength and stiffness of the coupling beams are, therefore, crucial if the desired global behavior of the CCW system is to be achieved. This paper presents the results of nonlinear response history analysis of two 20-story CCW buildings. Both buildings have the same geometric dimensions, and the components of the buildings are designed based on the equivalent lateral force procedure. However, one building is fitted with steel coupling beams while the- other is fitted with diagonally reinforced concrete coupling beams. The force-deflection relationships of both beams are based on experimental data, while the moment-curvature and axial load-moment relationships of the wall piers are analytically generated from cross-sectional fiber analyses. Using the aforementioned beam and wall properties, nonlinear response history analyses are performed. Superiority of the steel coupling beams is demonstrated through detailed evaluations of local and global responses computed for a number of recorded and artificially generated ground motions.
机译:当耦合梁在耦合核心墙(CCW)系统中适当地按比例分配时,来自地面运动的输入能量主要是通过耦合梁末端的塑料铰链区域中的非弹性变形消散的。理想的是,塑料铰链在梁的末端形成,而底壁墩保持弹性。因此,如果要实现CCW系统的理想整体性能,耦合梁的强度和刚度至关重要。本文介绍了两座20层CCW建筑物的非线性响应历史分析结果。这两座建筑物的几何尺寸相同,并且建筑物的构件是根据等效的横向力程序进行设计的。但是,一栋建筑物装有钢制连接梁,而另一栋建筑物装有对角钢筋混凝土的连接梁。两根梁的力-挠度关系均基于实验数据,而墙墩的弯矩-曲率和轴向载荷-弯矩关系是通过截面纤维分析来解析得出的。使用上述梁和墙的特性,进行非线性响应历史分析。通过详细评估为许多记录的和人工生成的地震动而计算出的局部和整体响应,可以证明钢制耦合梁的优越性。

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