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首页> 外文期刊>Journal of Earthquake Engineering >Inelastic Demand Spectra of Bi-Linear Models for Capacity Spectrum Method and Response of Simple Structures under Near-Source Records
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Inelastic Demand Spectra of Bi-Linear Models for Capacity Spectrum Method and Response of Simple Structures under Near-Source Records

机译:容量谱法双线性模型的非弹性需求谱和近源记录下简单结构的响应

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摘要

A very useful tool for the preliminary design of structures is the elastic demand spectrum that can be used in the capacity spectrum method. A pseudo-acceleration relationship has to be assumed when constructing a demand spectrum. This assumption results in large errors for long period structures with large damping ratios and the conventional demand spectra require a substitute elastic structure. In the present study, the conventional demand spectra are extended to bi-linear models. Pseudo-acceleration is still assumed but results in acceptably small errors, when a constant viscous damping coefficient for a single-degree-of-freedom (SDF) structure is calculated from the tangent stiffness and the damping ratio is set at 5% in both elastic and yield phases. For nonlinear structures, tangent stiffness dependency of damping force could be acceptable because energy absorption is primarily the result of structural nonlinear deformation. To extend the conventional demand spectra to a bi-linear model, effective period calculated from the secant stiffness has to be used. The use of effective period introduces no approximation because the peak displacement of the SDF structure is computed from nonlinear analysis in the time domain. The method presented in this study is also valid if damping coefficient proportional to initial elastic spectra is used. In this case, the pseudo-acceleration is defined as the base shear coefficient that is required to produce the peak displacement of the SDF structure in a static manner. We present demand spectra of bi-linear models for a number of near-source records from large earthquakes, and spectral ratios of two horizontal components. The effects of different types of ground motion on the response reduction factor due to inelastic deformation are investigated.
机译:对于结构的初步设计而言,非常有用的工具是可用于容量谱方法中的弹性需求谱。在构造需求频谱时必须假定伪加速关系。对于具有大阻尼比的长周期结构,此假设会导致较大的误差,并且常规需求谱需要替代的弹性结构。在本研究中,常规需求谱扩展到双线性模型。当根据切线刚度计算单自由度(SDF)结构的恒定粘性阻尼系数并将两个弹性体的阻尼比设置为5%时,仍假定为伪加速度,但会导致可接受的小误差。和产量阶段。对于非线性结构,阻尼力的切线刚度依赖性是可以接受的,因为能量吸收主要是结构非线性变形的结果。要将常规需求谱扩展到双线性模型,必须使用根据割线刚度计算的有效周期。有效期的使用不会引入任何近似值,因为SDF结构的峰值位移是根据时域中的非线性分析计算得出的。如果使用与初始弹性谱成比例的阻尼系数,则本研究中提出的方法也是有效的。在这种情况下,拟加速度定义为以静态方式产生SDF结构的峰值位移所需的基本剪切系数。我们为大地震中的许多近源记录提供了双线性模型的需求谱,以及两个水平分量的谱比。研究了不同类型的地震动对非弹性变形引起的响应减小因子的影响。

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