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Analytical Seismic Fragility of Fire Sprinkler Piping Systems.

机译:消防喷水灭火系统的分析易碎性。

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摘要

For the first time, a comprehensive simulation methodology is developed for fire sprinkler piping systems and is used to generate seismic fragility parameters of these systems. The experimental-based analytical model accounts for inelastic behavior constituents of the system including: threaded joints, grooved joints, solid braces, cable braces, hangers, and restrainers. The model incorporates a newly developed hysteresis model for threaded and grooved tee joints that is validated by the experimental results of several tee subassemblies. The modeling technique at the sub-system level is validated using the experimental results of four different piping subsystems. The methodology is used to obtain the seismic response of the fire sprinkler piping systems of University of California at San Francisco (UCSF) Hospital under two different suites of ninety-six artificially generated tri-axial floor acceleration histories. Eight classes of piping systems with variations on types of braces, weights, joints, and location of restrainers are considered in this study. After the component fragility parameters are obtained for the components of all piping cases, system level fragility parameters are defined, and a joint probabilistic seismic demand model is utilized to develop system fragility parameters. The effect of seismic performance variation on eight classes of piping systems were examined through component and system level fragility curves. These curves showed that the main run pipes with grooved type joints are more vulnerable compared to the threaded joints. Removing the water weight from the piping system reduced the failure probability in all component (specially in grooved joints). Cable braces are found to be more vulnerable compared to the solid braces. The behavior of armover pipes was improved by removing the wire restrainers from these pipes.;Finally, the probability of the impact between the pipes and their surrounding contents is studied by providing different clearances from the piping system. To do so, the displacement demands on the fire sprinkler systems are studied through two sub-system level experiments and two designed classes of the UCSF piping plan. The displacement fragility curves for large and small pipe diameters are obtained and compared with the probability of damage inside piping systems. These curves showed that, by providing 3in and 8in clearance from large and small pipe diameters respectively, the leakage failure in piping systems is more probable compared to the first pounding of piping system to its surroundings.
机译:首次为消防喷淋管道系统开发了一种综合的仿真方法,并用于生成这些系统的地震脆性参数。基于实验的分析模型考虑了系统的非弹性行为成分,包括:螺纹接头,沟槽接头,实心支撑,电缆支撑,吊架和约束器。该模型包含一个新开发的用于带螺纹和带槽三通的磁滞模型,该模型已通过多个三通组件的实验结果得到验证。使用四个不同管道子系统的实验结果验证了子系统级别的建模技术。该方法用于获得加利福尼亚大学旧金山分校(UCSF)医院的消防喷淋管道系统在两个不同的套件中的情况,这些套件包含九十六个人工生成的三轴底板加速度历史。在这项研究中,考虑了八类管道系统,这些管道系统的支撑,重量,接头和约束器的类型各不相同。在获得所有管道工况组件的组件易碎性参数后,定义系统级别的易碎性参数,并使用联合概率地震需求模型来开发系统易碎性参数。通过部件和系统级的脆性曲线检验了地震性能变化对八类管道系统的影响。这些曲线表明,与带螺纹的接头相比,带有沟槽式接头的主管管道更容易受到腐蚀。从管道系统上卸下水重可降低所有组件(特别是在沟槽连接处)的故障可能性。与实心支架相比,发现电缆支架更脆弱。通过从这些管道上拆下电线限制器,可以改善扶手管道的性能。最后,通过在管道系统中设置不同的间隙,研究管道及其周围内容物之间发生撞击的可能性。为此,通过两个子系统级别的实验和UCSF管道计划的两个设计类来研究消防喷淋系统的排量要求。获得了大,小管径的位移脆性曲线,并将其与管道系统内部损坏的可能性进行比较。这些曲线表明,通过分别提供与大直径和小直径的3in和8in的间隙,与管道系统第一次撞击周围环境相比,管道系统中的泄漏故障更有可能发生。

著录项

  • 作者

    Soroushian, Siavash.;

  • 作者单位

    University of Nevada, Reno.;

  • 授予单位 University of Nevada, Reno.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 420 p.
  • 总页数 420
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:41:44

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