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Seismic Retrofit Using Spring Damper Devices on High-Voltage Equipment Stands

机译:在高压设备支架上使用弹簧减震器进行地震改造

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The Bonneville Power Administration (BPA) operates a significant portion of the electrical high-voltage transmission grid in the Pacific Northwest. As part of a long-term seismic mitigation program, BPA sponsors research into ways to minimize the vulnerability of existing electrical substation equipment. Passive energy dissipation devices add supplemental damping to improve the dynamic response of structures to earthquakes. One such mechanism, a friction spring damping device, utilizes a primary and secondary set of self-centering ring springs installed around a single end-mount load shaft to reduce peak accelerations. The adaptation of this technology to seismically retrofit existing high-voltage substation equipment single-pedestal support stand is the subject of this paper. Dynamic properties were determined from force-displacement and vibration tests. Full-scale earthquake transient tests conducted on a support stand equipped with friction spring devices resulted in substantial reductions of the in-plane peak accelerations in comparison to tests performed without the friction spring devices.
机译:邦纳维尔电力局(BPA)在西北太平洋地区经营着高压输电网的很大一部分。作为长期减震计划的一部分,BPA赞助了有关研究方法以最大程度地降低现有变电站设备的脆弱性。被动能量消散装置增加了辅助阻尼,以改善结构对地震的动态响应。一种这样的机构,即摩擦弹簧阻尼装置,利用绕着单个末端安装负载轴安装的第一组和第二组自定心环形弹簧来减小峰值加速度。这项技术的应用是对现有的高压变电站设备的单基座支撑架进行抗震改造。动态性能由力-位移和振动测试确定。与没有摩擦弹簧装置进行的测试相比,在配备有摩擦弹簧装置的支撑架上进行的全面地震瞬态测试导致平面内峰值加速度大大降低。

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