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Seismic performance evaluation of switchboard cabinets using nonlinear numerical models.

机译:使用非线性数值模型评估配电盘柜的抗震性能。

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摘要

Past earthquake events have shown that seismic damage to electrical power systems in commercial buildings, hospitals, and other systems such as public service facilities can cause serious economic losses as well as operational problems. A methodology for evaluation of the seismic vulnerability of electrical power systems is needed and all essential components of the system must be included. A key system component is the switchboard cabinet which houses many different elements which control and monitor electrical power usage and distribution within a building. Switchboard cabinets vary in size and complexity and are manufactured by a number of different suppliers; a typical cabinet design was chosen for detailed evaluation in this investigation.;This study presents a comprehensive framework for the evaluation of the seismic performance of electrical switchboard cabinets. This framework begins with the introduction and description of the essential equipment in building electrical power systems and explains possible seismic damage to this equipment. The shortcomings of previous studies are highlighted and advanced finite element models are developed to aid in their vulnerability estimation. Unlike previous research in this area, this study proposes practical, computationally efficient, and versatile numerical models, which can capture the critical nonlinear behavior of switchboard cabinets subjected to seismic excitations. A major goal of the current study was the development of nonlinear numerical models that can accommodate various support boundary conditions ranging from fixed, elasto-plastic to free.;Using both linear and nonlinear dynamic analyses, this study presents an enhanced evaluation of the seismic behavior of switchboard cabinets. First the dynamic characteristics of switchboard cabinets are determined and then their seismic performance is assessed through nonlinear time history analysis using an expanded suite of ground motions. The seismic responses and associated ground motions are described and analyzed using probabilistic seismic demand models (PSDMs). Based on the PSDMs, the effectiveness and practicality of common intensity measures are discussed for different components. Correlation of intensity measures and seismic responses are then estimated for each component, and their seismic performance and uncertainties are quantified in terms of engineering demand parameters. The results of this study are intended for use in the seismic vulnerability assessment of essential electrical equipment in order to achieve more reliable electrical power systems resulting in reduced overall risk of both physical and operational failures of this important class of nonstructural components.
机译:过去的地震事件表明,商业建筑,医院和其他系统(如公共服务设施)中的电力系统受到地震破坏会导致严重的经济损失以及运营问题。需要一种用于评估电力系统地震脆弱性的方法,并且必须包括系统的所有基本组件。系统的关键组件是配电柜,柜内装有许多不同的元件,用于控制和监视建筑物内的电能使用和分配。配电柜的尺寸和复杂性各不相同,并且由许多不同的供应商制造;本次调查选择了典型的机柜设计进行详细评估。本研究为电气配电柜的抗震性能评估提供了一个全面的框架。该框架首先介绍和描述了建筑电力系统中的基本设备,并说明了该设备可能遭受的地震破坏。突出了先前研究的缺点,并开发了高级的有限元模型来帮助评估其脆弱性。与该领域的先前研究不同,本研究提出了实用,计算有效且通用的数值模型,该模型可以捕获遭受地震激励的配电柜的关键非线性行为。当前研究的一个主要目标是开发非线性数值模型,该模型可以适应从固定,弹塑性到自由的各种支撑边界条件。使用线性和非线性动力学分析,本研究可以更好地评估地震行为。配电柜。首先确定配电盘柜的动态特性,然后使用扩展的地面运动通过非线性时程分析来评估其抗震性能。使用概率地震需求模型(PSDM)描述和分析了地震响应和相关的地面运动。基于PSDM,讨论了针对不同组件的通用强度测量的有效性和实用性。然后,针对每个组件估算强度测量值和地震响应的相关性,并根据工程需求参数量化其地震性能和不确定性。这项研究的结果旨在用于基本电气设备的地震易损性评估,以实现更可靠的电力系统,从而降低此类重要的非结构性组件发生物理和操作故障的总体风险。

著录项

  • 作者

    Hur, Jieun.;

  • 作者单位

    Georgia Institute of Technology.;

  • 授予单位 Georgia Institute of Technology.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 203 p.
  • 总页数 203
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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