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A Darwinian evolution of electrical power systems design for preventing seismic risks in sensitive buildings

机译:防止敏感建筑发生地震风险的电力系统设计的达尔文进化论

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Seismic events cause serious problems to the electrical supply continuity in sensitive structures. The design of electrical and mechanical power systems can apply a “Darwinian” approach in sizing the components and in drawing the layout for minimizing the seismic stresses during an earthquake. This kind of evolution has to aim in preventing more than protecting damages to systems operability. All the components should have adequate ratings and be installed in a proper manner to provide a reliable and safe electrical system after or during earthquake. The electrical engineer and mechanical engineer should work closely with the structural engineer. The paper suggests a comparison among different international approaches in simplified evaluation of the seismic forces to assist the design electrical engineers and highlights the need that the constructors of equipment essential to the service continuity, as transformers, switchboards, generator sets, uninterruptible power supplies, motors driving critical loads, have to promote certified tests of their seismic behavior and to make available their basic seismic parameters.
机译:地震事件对敏感结构的供电连续性造成严重问题。电气和机械动力系统的设计可以采用“达尔文式”方法确定组件的大小并绘制布局,以最大程度地减少地震时的地震应力。这种演变的目的不仅在于防止保护系统可操作性受损,还在于防止更多的事情发生。所有组件应具有足够的额定值,并以适当的方式安装,以在地震后或地震期间提供可靠且安全的电气系统。电气工程师和机械工程师应与结构工程师紧密合作。本文建议在简化地震力评估的不同国际方法之间进行比较,以协助设计电气工程师,并强调需要对服务连续性至关重要的设备制造商,例如变压器,配电盘,发电机组,不间断电源,电动机在驱动关键载荷时,必须促进对其抗震性能的合格测试,并提供其基本抗震参数。

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