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Residual displacement demands of conventional and dual oscillators subjected to earthquake ground motions characteristic of the soft soils of Mexico City

机译:传统和双振荡器的残余位移要求受到墨西哥城软土特征的地震地面运动的影响

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摘要

This paper presents a statistical evaluation of residual displacement (RDs) demands in conventional and dual single-degree-of-freedom (SDOF) oscillators subjected to a set of 220 earthquake ground motions recorded at soft soil sites of Mexico City. A dual SDOF oscillator represents a highly-dissipating energy system (e.g. buckling-restrained braces, BRBs) acting in parallel with a conventional system (e.g. flexible moment-resisting frames). To provide a context, RDs were normalised with respect to the corresponding: a) maximum transient displacements, and b) elastic spectral displacement. The effects of post-yield stiffness ratio (as affected by P- effects), normalised period of vibration with respect to the predominant period of the ground motion, the type of hysteretic response, maximum displacement ductility, lateral strength ratio, type of transition (from elastic-to-plastic response), and damping ratio on normalised RDs were examined for the conventional oscillators. In addition, the effects of the stiffness ratio, lateral strength ratio, displacement ductility, post-yielding stiffness ratio, and type of hysteretic response of the primary and secondary parts of dual SDOF oscillators on normalised RDs were also evaluated. From the results of this investigation, it was observed that for dual SDOF systems the amplitude of normalised RDs is small when the primary part remains elastic. On the contrary, if the primary part exhibits inelastic response, RDs might increase significantly and the post-yielding stiffness ratio of the secondary part plays a key role for constraining them (i.e. while a positive value reduces RDs significantly; a negative value is highly detrimental). Also, it was found that the type of hysteretic response of the primary part of a dual system has a significant effect on RDs (e.g. it was found that a primary part with self-centring capacity, acting in parallel with a highly dissipation system (e.g. BRBs) as secondary part, is very effective for diminishing RDs). A discussion section is also offered to highlight the new findings of this study and differences on normalised RD demands between soft and stiff soils.
机译:本文介绍了统计和评估常规和双单自由度(SDOF)振荡器在墨西哥城的软土现场记录的一组220次地震地面运动中对残余位移(RDs)的要求。双SDOF振荡器代表了一种高耗散的能量系统(例如,屈曲约束支撑,BRB)与常规系统(例如,挠性抗力矩框架)并行运行。为了提供背景,相对于相应的值对RD进行了归一化:a)最大瞬态位移,b)弹性光谱位移。屈服后刚度比(受P-效应影响),相对于地面运动的主要周期的标准化振动周期,滞后响应的类型,最大位移延性,横向强度比,过渡类型的影响(根据弹塑性响应)和常规振荡器,检查了归一化RD的阻尼比。此外,还评估了双SDOF振荡器主要部分和次要部分的刚度比,横向强度比,位移延性,屈服后刚度比以及滞后响应类型对归一化RD的影响。从调查的结果可以看出,对于双SDOF系统,当主要部分保持弹性时,归一化RD的振幅很小。相反,如果主要部分表现出非弹性响应,则RD可能会显着增加,并且次要部分的屈服后刚度比在约束它们方面起着关键作用(即,正值会显着减少RDs;负值会严重损害RDs)。 )。此外,还发现对偶系统主要部分的磁滞响应类型对RD有重大影响(例如,发现具有自定心能力的主要部分与高耗散系统并行作用(例如, BRBs)作为次要部分,对于减少RDs非常有效。还提供了一个讨论部分,以突出该研究的新发现以及在软土和硬土之间标准化RD需求的差异。

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