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对电力系统的配电楼在考虑主体结构和内部电气设备相互作用情况下,进行了线弹性阶段及弹塑性阶段的地震反应分析,并把计算结果与不考虑主体结构和电气设备相互作用的计算结果进行分析比较.结果表明,在小震作用下,结构-电气设备的相互作用对配电楼的影响不明显,配电楼的抗震设计采用传统等效荷载化方法的计算结果是偏安全的;但是在大震作用下,电气设备真实的参与了整个配电楼的动力反应,并对结构产生了相对作用,这种作用是向着不利于配电楼抗震设计的方向发展,电气设备对整个结构动力反应的贡献不能忽略,此时配电楼的抗震设计如仍采用传统等效荷载化的方法是偏于不安全的.该配电楼还存在明显的偏心扭转效应,设计时应引起重视,提高角柱的抗侧移能力. 相似文献
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It is of great significance to make comparative analyses of seismic fortification criteria at home and abroad for improving the anti-seismic capability of electrical equipment and revising the relevant national standards. A brief overview of American, Japanese, IEC standards and Chinese seismic design codes for electrical equipment is presented. Differences between these seismic fortification standards of electrical equipment are compared and analyzed in respect of the goal and level of seismic fortification and the seismic design spectrum. The advantages and disadvantages of Chinese standards are pointed out. Through learning from foreign experience on the determination of seismic fortification standards, recommendations are made for the improvement and revision of Chinese seismic fortification standards for electrical equipment. 相似文献
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