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Guidelines for seismic design of flexible buswork between substation equipment

机译:变电站设备之间柔性母线的抗震设计准则

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During an earthquake, flexible buswork between interconnected equipment is stretched and compressed dynamically. This causes additional forces to be transmitted to the equipment. Design guidelines for flexible buswork have been determined through non-linear finite element simulations on models of typical installations. For a proper design, the required amount of slack in the buswork is established using an estimation of the maximum horizontal relative displacement between equipment in a pair, with an additional length function of the buswork shape and its corresponding stiffness. To avoid multi-connected equipment effects, all pairs of equipment within a given electrical phase must be designed in such way. Of utmost importance, equipment must be designed with an additional static load at its attachment point, to take account of the unavoidable forces transmitted by the buswork. From the previous criteria, a methodology for the design of universal flexible buswork has been established for use within Hydro-Quebec and shown to be a simple way to cover most pairs of equipment within a given voltage level and for a given seismic demand. This methodology resulted in design tables specifying the required conductor length of possible shapes, for different distances between equipment. The guidelines described in this paper are proposed for possible adoption by other utilities.
机译:在地震期间,互连设备之间的灵活总线系统会动态拉伸和压缩。这导致额外的力传递到设备上。通过在典型安装的模型上进行非线性有限元模拟,可以确定柔性公交系统的设计准则。为了进行适当的设计,通过对一对设备之间的最大水平相对位移进行估算,并根据母线形状的附加长度函数及其相应的刚度,确定母线中所需的松弛量。为了避免多设备连接的影响,必须以这种方式设计给定电气相位内的所有设备对。最重要的是,设备的设计必须在其连接点处施加额外的静态负载,以考虑到母线传递的不可避免的力。根据以前的标准,已经建立了通用柔性母线的设计方法,用于魁北克水电局内部,并且被证明是在给定电压水平和给定地震需求下覆盖大多数设备对的简单方法。这种方法得出的设计表指定了设备之间不同距离的可能形状所需的导体长度。建议本文中介绍的准则,以供其他实用程序采用。

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