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首页> 外文期刊>Structural Design of Tall Buildings >EMPIRICAL HYSTERETIC ENERGY WITH STRENGTH, STRENGTH AND DRIFT, AND SCWB DESIGNS USING STEEL MOMENT-RESISTING FRAMES
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EMPIRICAL HYSTERETIC ENERGY WITH STRENGTH, STRENGTH AND DRIFT, AND SCWB DESIGNS USING STEEL MOMENT-RESISTING FRAMES

机译:具有强度,强度和漂移的经验滞回能量,以及采用钢制抗弯框架的翼板设计

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摘要

This paper represents the hysteretic energy performance of twelve steel moment-resisting frames intentionally designed by three different design procedures. The three types of design procedure were: (1) strength controlled design; (2) strength and drift controlled design; and (3) strong-column/weak-beam controlled design. The energy performances of the so-designed frames were discussed in view of the effects of strength variations, stiffness variations, and plastic mechanism variations, on the hysteretic energy input and its distribution in multiple storey frames. An empirical mean hysteretic energy formula has been proposed based on this study.
机译:本文介绍了通过三种不同的设计方法有意设计的十二个抗弯钢框架的滞回能量性能。设计程序的三种类型为:(1)强度控制设计; (2)强度和漂移控制设计; (3)强柱/弱束控制设计。鉴于强度变化,刚度变化和塑性机制变化对滞回能量输入及其在多层框架中的分布的影响,讨论了这种设计框架的能量性能。在此研究的基础上,提出了经验滞后平均能量公式。

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