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Electrical Power Systems Availability in Buildings Exposed to Seismic Hazard—Part I: Electrical Criteria and Part II: Mechanical Criteria

机译:电力系统在面向地震危险的建筑物中的可用性 - 第一部分:电气标准和第二部分:机械标准

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摘要

Part I-Earthquakes cause serious problems to the reliability and continuity of the supply of electrical power systems, particularly in sensitive structures such as hospitals. The mechanical and electrical criteria for the design and installation should take building categories (based on occupancy and/or activity importance) into account. Three levels of functional performance following an earthquake are identified for equipment. A power distribution topology, which this paper refers to as the “brush-distribution system,” is discussed. Part II-After an earthquake, a building could be unusable, not necessarily due to structural damage but because electrical and mechanical systems that are not structural components have sustained damage and are inoperable. Designers of building electrical systems need to study the special requirements for the design and installation of electrical power systems in buildings that are situated in areas that where seismic events are possible. One important goal is to maintain the functionality and the integrity of the power system following an earthquake. If the layout of the electrical components is done with regard to placing the more critical components at the ground level or at other locations where the accelerations are minimized, the probability that the electrical system will continue to function after an earthquake is increased.
机译:第一部分地震导致电力系统供应的可靠性和连续性导致严重问题,特别是在诸如医院的敏感结构中。设计和安装的机械和电气标准应考虑到楼宇类别(基于占用和/或活动重要性)。地震后的三个功能性能进行了识别为设备。讨论了该文件是指作为“刷子分配系统”的配电拓扑。第二部分 - 在地震发生后,建筑物可能是不可用的,不一定是由于结构损坏,因为没有结构部件的电气和机械系统具有持续损坏并且无法操作。建筑电气系统的设计人员需要研究位于可能的区域内的建筑物的设计和安装电力系统的特殊要求。一个重要目标是保持地震后的功能和电力系统的完整性。如果关于在地面层或加速度最小化的其他位置处的其他位置进行电气部件的布局,则电气系统在地震时将继续起作用的可能性。

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