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Design and Analysis of Buildings with Fluidic Self-Centering Systems

机译:具有流体自定心系统的建筑物的设计与分析

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摘要

Design and analysis procedures for buildings with fluidic self-centering systems are presented and evaluated. The design procedures parallel those for buildings with damping systems in Chapter 18 of the ASCE 7 Standard. The evaluation of the procedures is based on the design and nonlinear response history analysis of 3- and 6- story steel moment frame example buildings. The study establishes the validity of simplified methods of analysis and determines their range of accuracy. Specifically, the simplified methods of analysis provide good and most often conservative estimates of drift and good predictions of self-centering device forces. The results demonstrated that buildings equipped with fluidic self-centering devices and designed per the presented procedures offer benefits of substantial reduction in residual story drift but also reduced peak story drift, peak floor acceleration, peak story shear and base shear forces, and reduced floor acceleration response spectra by comparison to the code-complaint moment resisting framed buildings without fluidic self-centering devices.
机译:介绍并评估了带有流体自定心系统的建筑物的设计和分析程序。设计程序与ASCE 7标准第18章中带有阻尼系统的建筑物的设计程序平行。程序的评估基于3层和6层钢框架实例建筑的设计和非线性响应历史分析。该研究确定了简化分析方法的有效性,并确定了其准确性范围。具体而言,简化的分析方法提供了很好的(通常是保守的)漂移估计以及对自定心设备力的良好预测。结果表明,配备有流体自对中装置并按照提出的程序进行设计的建筑物具有以下优点:可以显着减少残余楼层漂移,但还可以减少峰值楼层漂移,峰值楼层加速度,峰值楼层剪力和基础剪力以及降低的楼层加速度。通过与没有流体自定心装置的抵抗框架的建筑物的代码投诉力矩相比较,得出了响应频谱。

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