设备地震级别(ESL)定义标准:美国和欧洲规范的比较

G. Parise, M. Angelis, A. Reggio
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引用次数: 7

摘要

尽管非结构部件和设备通常被称为“建筑附件”和“次要元件”,但它们的重要性远非次要。在关键设施的最坏情况下,设备的故障会严重影响震后的功能,导致基本服务或业务的损失。这些考虑突出了对设备进行地震鉴定的必要性,这是证明其在预期地震事件中能够充分发挥所需功能的基本手段。在本文中,作者提出了一种新的方法来解决地震定性问题,其中对构件的地震需求用设备地震级别(ESL)来定义,而其固有的地震能力用设备合格类别(EQC)来分类。本工作的主题——ESL的确定必须满足设备抗震设计规范规定的要求。因此,对美国和欧洲现行的地震规范进行了比较研究,以便对其规定进行批判性评估,并开发出一种方法,即使是没有地震工程领域专业知识的设计师也可以直接实施。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Criteria for the definition of the Equipment Seismic Levels (ESL): Comparisons between USA and European codes
In spite of the names of “building attachments” and “secondary elements” usually given to nonstructural components and equipment, they are far from being secondary in importance. In the worst case of critical facilities, the failure of equipment strongly impacts on the post-earthquake functionality, causing the loss of essential services or businesses. Such considerations highlight the need for a seismic qualification of equipment as the essential means to demonstrate its adequacy to perform the required function during the expected earthquake event. In the present paper, the authors deal with a new approach to the problem of seismic qualification, in which the seismic demand posed to the component is defined in terms of Equipment Seismic Levels (ESL), while its inherent seismic capacity is classified in terms of Equipment Qualification Categories (EQC). The determination of the ESL, subject of this work, has to satisfy the requirements prescribed by the codes for the seismic design of equipment. A comparative study of the current seismic codes in USA and in Europe is hence carried out, in order to critically assess their provisions and to develop a methodology that can be implemented straightforwardly also by designers not having expertise in the field of earthquake engineering.
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