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Statistical Evaluation of Approximate Methods for Estimating Maximum Deformation Demands on Existing Structures

机译:估算现有结构最大变形需求的近似方法的统计评估

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摘要

A statistical study is presented to evaluate the accuracy of five approximate methods that have been proposed in the past to estimate the maximum inelastic deformation demand on existing structures. Three are based on equivalent linearization in which the inelastic deformation is approximated by the maximum deformation of an equivalent linear elastic system having lower lateral stiffness and larger viscous damping with respect to the preyielding properties of the inelastic system. In the equivalent linear methods evaluated here the equivalent period and equivalent damping ratio are computed as a function of the maximum deformation through the displacement ductility ratio. The other two methods estimate the maximum inelastic deformation of a system by modifying its maximum elastic deformation through a displacement modification factor. Modification factors depend on the initial period of vibration and its lateral strength. A relatively large number of earthquake ground motions recorded on sites having average shear wave velocities higher than 180 m/s are used to calculate error statistics. For each method mean errors and standard errors, as well as probability of underestimating or overestimating inelastic deformations, are presented and discussed.
机译:提出了一项统计研究,以评估过去提出的五种近似方法的准确性,以估计现有结构的最大非弹性变形需求。三者基于等效线性化,其中,相对于非弹性系统的预屈服特性,等效弹性线性由等效的线性弹性系统的最大变形来近似,该等效线性弹性系统具有较低的侧向刚度和较大的粘性阻尼。在此处评估的等效线性方法中,等效位移周期和等效阻尼比是根据位移延性比得出的最大变形的函数。另两种方法通过通过位移修正因子修正系统的最大弹性变形来估计系统的最大非弹性变形。修改因子取决于振动的初始周期及其横向强度。在平均剪切波速度高于180 m / s的站点上记录的相对大量的地震地面运动用于计算误差统计量。对于每种方法,均会提出并讨论平均误差和标准误差,以及低估或高估非弹性变形的可能性。

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