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Testing Protocol for Experimental Seismic Qualification of Distributed Nonstructural Systems

机译:分布式非结构系统抗震鉴定试验规程

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摘要

Building codes and standards now require seismic qualification of mechanical and electrical equipment and their mounting systems in important buildings to ensure that they remain functional during and after major seismic events. To better understand the seismic behavior of nonstructural building contents and equipment, experimental procedures have been proposed for either displacement or acceleration sensitive nonstructural components, through racking or shake table protocols, respectively. However, certain types of nonstructural systems are sensitive to both accelerations and interstory drifts. An innovative testing protocol is proposed that can subject nonstructural systems to the combined accelerations and interstory drifts expected within multistory buildings during seismic shaking. Moreover, the proposed protocol, when used with equipment such as the University at Buffalo Nonstructural Component Simulator (UB-NCS), allows for the assessment of the seismic performance of distributed nonstructural systems with multiple attachment points, and the evaluation of seismic interactions between components. The versatility and capabilities of the testing protocol are demonstrated through testing of a full-scale hospital emergency room containing typical nonstructural components and life support medical equipment.
机译:现在,建筑规范和标准要求对重要建筑物中的机电设备及其安装系统进行抗震鉴定,以确保它们在重大地震发生期间和之后仍能正常工作。为了更好地理解非结构性建筑内容物和设备的抗震性能,已经提出了分别通过机架或振动台规程对位移或加速度敏感的非结构性组件进行实验的程序。但是,某些类型的非结构系统对加速度和层间位移都敏感。提出了一种创新的测试协议,该协议可以使非结构系统经受地震震动期间多层建筑物内预期的组合加速度和层间漂移。此外,建议的协议与布法罗大学非结构构件模拟器(UB-NCS)等设备一起使用时,可以评估具有多个连接点的分布式非结构系统的抗震性能,并评估构件之间的地震相互作用。通过对包含典型非结构性组件和生命支持医疗设备的大型医院急诊室进行测试,证明了该测试协议的多功能性和功能性。

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  • 来源
    《Earthquake spectra》 |2011年第3期|p.835-856|共22页
  • 作者单位

    Postdoctoral Research Associate, University at Buffalo, State University of New York, 212 Ketter Hall, Buf-falo, NY 14260;

    Associate Professor, University at Buffalo, State University of New York, 212 Ketter Hall, Buffalo, NY 14260;

    Professor, University at Buffalo, State University of New York, 212 Ketter Hall, Buffalo, NY 14260;

    C. Furnas Eminent Professor, University at Buffalo, State University of New York, 212 Ketter Hall, Buffalo,NY 14260;

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