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Simple Models for Inelastic Seismic Analysis of Asymmetric Multistory RC Buildings

机译:非对称多层RC建筑物非弹性地震分析的简单模型

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A simple stick model is presented for the inelastic seismic analysis in 3D of two-way eccentric multistory RC buildings. It has 3 DoFs per floor, point hinges at the ends of the vertical elements connecting floors, elastic story stiffness derived from the corresponding story force-interstory deformation relations of the elastic 3D structure under inverted-triangular floor loading (by torques for torsional stiffness, by horizontal forces for the lateral ones), story yield forces derived from the total resistant shear of the story vertical elements, but no coupling between lateral and torsional inelasticity. It is evaluated on the basis of comparisons of response histories of floor displacements to those from full nonlinear models in 3D of four actual buildings. Alternative locations of the story vertical element with respect to the floor mass center are examined: (a) the floor "center of twist" of the elastic 3D building under inverted-triangular floor torques; (b) the story "effective center of rigidity," through which application of inverted triangular lateral forces does not induce twisting of floors; (c) the centroid of the secant stiffness of the story vertical members at yielding and (d) the centroid of the lateral force resistance of story vertical elements. Among alternatives (a)-(d), the floor "center of twist" provides the best agreement with floor displacement response-histories from full 3D nonlinear models. This means that the static eccentricity that matters for torsional response may be taken as that of the floor "center of twist." The center of resistance comes up as the second-best choice.
机译:提出了一种简单的摇杆模型,用于双向偏心多层RC建筑物的3D非弹性地震分析。每个楼层有3个自由度,在连接楼层的垂直元素的末端有点铰链,弹性楼层刚度由倒三角形的地板载荷下弹性3D结构的相应楼层力-层间变形关系得出(通过扭转刚度的扭矩, (水平方向的力为水平方向的力),故事的屈服力来自故事垂直元素的总抗剪力,但横向和扭转非弹性之间没有耦合。它是根据地板位移的响应历史与来自四个实际建筑物的3D中完全非线性模型的响应历史进行比较的基础上进行评估的。相对于地板质量中心的楼层垂直元素的替代位置进行了检查:(a)在倒三角形的地板扭矩下弹性3D建筑物的地板“扭曲中心”; (b)故事“有效的刚度中心”,通过它施加倒三角形的横向力不会引起地板的扭曲; (c)垂直构件在屈服时的割线刚度的质心,以及(d)垂直构件抵抗侧向力的质心。在替代方案(a)-(d)中,地板“扭曲中心”与来自完整3D非线性模型的地板位移响应历史之间的最佳一致性。这意味着对于扭转响应重要的静态偏心率可以视为地板“扭曲中心”的偏心率。阻力中心是第二好的选择。

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