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The role of phase difference components of ground motions in the torsional response of asymmetric buildings

机译:地震动的相位差分量在非对称建筑物扭转响应中的作用

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It is demonstrated that the difference in phase content between orthogonal, horizontal, accelerograms can directly influence the effective (band-limited) torque energy applied to a plan asymmetric structure. This is not the case where a plan asymmetric structure is excited solely by a unidirectional, horizontal, accelerogram ground motion. It is shown that this effective torque energy is well correlated with building torsional (response) acceleration energy and element ductility demands for a broad class of multistorey structures. Nonlinear time-history analyses employing a database of accelerogram abstracted from USGS are used to quantify the influence of the phase difference content on these building responses. Bias in nonlinear time-history analyses based on a small sample of accelerograms caused by phase difference content is discussed.
机译:结果表明,正交,水平,加速度图之间的相位含量差异可以直接影响施加到平面不对称结构上的有效(带限)扭矩能量。平面非对称结构仅通过单向,水平,加速度计地面运动来激发的情况并非如此。结果表明,对于多种类型的多层结构,这种有效的扭矩能量与建筑扭转(响应)加速能量和元素延性要求紧密相关。非线性时程分析采用了从USGS提取的加速度图数据库,用于量化相位差内容对这些建筑物响应的影响。讨论了非线性时程分析的偏差,该偏差基于一小部分由相位差内容引起的加速度图。

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