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Estimation of the seismic energy demands of two-way asymmetric-plan building systems

机译:双向非对称建筑系统的地震能量需求估算

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This paper proposes a method for the estimation of the seismic energy demands of two-way asymmetric-plan buildings under bi-directional ground excitations. The modal absorbed energies of asymmetric-plan buildings are estimated by using the three-degree-of-freedom (3DOF) modal systems. The 3DOF modal system represents the two roof translations versus the two base shears and the roof rotation versus the base torque relationships of each vibration mode of two-way asymmetric-plan buildings. Not only the total absorbed energy but also the portions of the total absorbed energy contributed from translational and rotational deformations can be respectively estimated. This study verifies the relationship between the signs of modal eccentricities and the trend of uneven distribution of modal absorbed energy on floor-plan edges of asymmetric-plan buildings. The accuracy of the proposed method was verified by analyzing one 3-storey and one 20-storey two-way asymmetric-plan buildings subjected to bi-directional ground motions. The computational efficiency of the proposed method is confirmed by comparing the computation time with that required by using the nonlinear response history analysis.
机译:本文提出了一种双向地基激励下双向非对称建筑地震能量估计的方法。通过使用三自由度(3DOF)模态系统估算不对称平面建筑的模态吸收能量。 3DOF模态系统表示两种非对称计划建筑物的每种振动模式的两个屋顶平移与两个基础剪的相对关系以及屋顶旋转与基础扭矩的关系。不仅可以分别估计总吸收能量,而且可以分别估计由平移和旋转变形贡献的总吸收能量的部分。这项研究验证了模态偏心迹象与模态吸收能在不对称平面建筑物的平面边缘上分布不均匀趋势之间的关系。通过分析一栋三层和一栋二十层的双向不对称平面建筑物,验证了该方法的准确性。通过将计算时间与使用非线性响应历史分析所需的时间进行比较,可以确认所提方法的计算效率。

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