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Introduction of an innovative base isolation system for seismic protection of HV components based on a combination of wire ropes and viscous dampers

机译:基于电线绳和粘性阻尼器的组合,引进了一种创新的基础隔离系统,用于HV组件的地震保护

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Upstanding electrical high voltage (HV) equipment, such as the 3AP3 circuit breaker and similar, are structural systems where operators and manufacturers are still requesting a simpler, more robust and cost-effective base isolation solution in order to manage the qualification for high seismic requirements. This paper provides a summary of the methodology used to develop a reusable, optimized base isolated system in terms of structure based stress reduction and cost efficiency, which will attempt to achieve qualification safely. The methodology used in this study combines numerical analysis and shakes table testing in order to achieve a cost efficient solution. First, the analytical models for the structure and the base isolation system consisting of wire ropes and viscous dampers are created on a commercial FEM code. Once the models are calibrated, the system is optimized to achieve an optimum performance at minimum cost requirements. Finally, qualification through a shake table test takes place based on the given most suitable configuration. The ITT Enidine wire rope isolator was the most suitable solution for this type of structure and multi-axis earthquake excitation. In order to effectively control rocking mode amplitudes, supplementary viscous damping was added. The adjustability of the system makes it reusable for other single supporter HV components with different physical weights and geometry or lower seismic requirements.
机译:直立电气高压(HV)设备,如3AP3断路器和类似的设备,是运营商和制造商仍在要求更简单,更强大和经济高效的基础隔离解决方案,以便管理高地震要求的资格。本文概述了用于在基于结构的压力降低和成本效率方面开发可重复使用的,优化的基础隔离系统的方法的摘要,这将尝试安全实现资格。本研究中使用的方法结合了数值分析和摇头表测试,以实现成本有效的解决方案。首先,在商业有限元编码上创建由绳索和粘性阻尼器组成的结构和基座隔离系统的分析模型。一旦校准模型,系统经过优化,以实现最低成本要求的最佳性能。最后,通过摇架测试的资格基于给定的最合适的配置进行。 ITT eNidine钢丝绳隔离器是这种结构和多轴地震激励的最合适的解决方案。为了有效地控制摇摆模式幅度,加入补充粘性阻尼。系统的可调节性使其可重复使用具有不同物理权重和几何形状或较低地震要求的其他单个支持者HV组件。

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