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Development of seismic infill wall isolator subframe (SIWIS) system.

机译:地震填充墙隔离子框架(SIWIS)系统的开发。

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摘要

The Seismic Infill Wall Isolator Subframe (SIWIS) system is developed in this study for use in building frames with masonry infill walls in order to prevent damage to columns or infill walls and to minimize life-safety hazards during potentially damaging earthquakes. Because of the conventional tight-fit construction within structure frames, infill walls participate in resisting wind and seismically induced loads. Although beneficial during wind loads and minor earthquakes, the lateral load resistance of infill walls during strong events can damage the wall or the frame because the infill wall is usually not designed to carry in-plane loads. Complete isolation of infill walls by separation gaps as an alternative construction suffers from lack of convenient and satisfactory solutions for fire and acoustic protection of the gap and the out-of-plane stability of the wall. The SIWIS system, which consists of two vertical and one horizontal sandwiched light-gauge steel studs with SIWIS elements in the vertical members, is designed to allow infill wall-frame interaction under wind loading and minor-to-moderate earthquakes for reduced building drift, but to disengage them under severe damaging events.; An experimental testing program planned and carried out mainly including a series of tests on three different designs for fuse element including concrete disk, steel disk, and lumber disk followed by a series of in-plane static pushover tests on a scaled two-bay three-story steel frame equipped with an SIWIS device. Generalized nonlinear finite element modeling schemes were developed for infilled steel frames with and without SIWIS system. Validation of modeling schemes was accomplished by comparing the experimental observations with the numerical predictions. The analytical and experimental results show that the concept of the proposed system works as a "seismic isolation" system for infill walls by utilizing, initially, the beneficial stiffness and strength effects of the infill wall up to a predefined point, but, ultimately isolating the infill wall from the frame for their safety. Practical design approaches were proposed and applied to three examples including: low rise, mid-rise, and high-rise buildings in high seismic and wind zones to demonstrate the performance of the proposed system.
机译:这项研究开发了地震填充墙隔离子框架(SIWIS),用于带有砖石填充墙的建筑框架,以防止损坏立柱或填充墙,并在潜在破坏性地震中将生命安全危害降至最低。由于结构框架内的常规紧密配合结构,填充墙参与了抵抗风和地震引起的载荷。尽管在风荷载和轻微地震中有益,但填充墙的强侧向抵抗力在强事件中会损坏墙或框架,因为填充墙通常不设计为承受平面荷载。作为替代结构,通过分隔间隙完全隔离填充墙存在着缺乏方便且令人满意的解决方案,该方法缺乏防火和隔音的间隙以及墙的平面外稳定性。 SIWIS系统由两个垂直和一个水平夹层轻型钢钉组成,在垂直构件中带有SIWIS元素,旨在在风荷载和中小地震作用下填充墙框架相互作用,以减少建筑物的漂移,但要在严重的破坏性事件中脱离它们。计划并进行了一项实验性测试计划,主要包括对三种不同设计的保险丝元件(包括混凝土盘,钢盘和木材盘)进行一系列测试,然后在比例缩放的两格三舱结构上进行一系列平面内静推力测试。配备SIWIS设备的故事钢框架。开发了带有和不带有SIWIS系统的钢框架的广义非线性有限元建模方案。通过将实验观察结果与数值预测结果进行比较,完成了建模方案的验证。分析和实验结果表明,所提出的系统的概念通过首先利用填充墙的有益刚度和强度效应达到预定点,而作为填充墙的“地震隔离”系统,但最终将其隔离。从框架填充墙以确保安全。提出了实用的设计方法,并将其应用于三个示例,包括在高地震和风灾地区的低层,中层和高层建筑,以演示所提出系统的性能。

著录项

  • 作者

    Aliaari, Mohammad.;

  • 作者单位

    The Pennsylvania State University.;

  • 授予单位 The Pennsylvania State University.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 423 p.
  • 总页数 423
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

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