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Seismic mitigation of substation cable connected equipment using friction pendulum systems

机译:使用摩擦摆系统的变电站电缆连接设备的地震减轻

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Power transmission substations are susceptible to potential damage under seismic excitations. Two of the major seismic failure modes in substation supplies are: the breakage of brittle insulator, and conductor end fittings. This paper presents efficient isolation strategies for seismically strengthening of a two-item set of equipment including capacitive voltage transformer (CVT) adjacent to a Lightning Arrester (LA). Two different strategies are proposed, Case A: implementation of base isolation at the base of the CVT, while the LA is kept fixed-base, and Case B: implementation of base isolation at the base of the LA, while the CVT is kept fixed-base. Both CVT and LA are connected to each other using a cable during the dynamic excitation. The probabilistic seismic behavior is measured by Incremental Dynamic Analysis (IDA), and a series of appropriate damage states are proposed. Finally, the fragility curves are derived for both the systems. It is found that Friction Pendulum System (FPS) isolator has the potential of decreasing flexural stresses caused by intense ground motions. The research has shown that when the FPS is placed under LA, i.e. Case B (as oppose to Case A), the efficiency of the system is improved in terms of reducing the forces and stresses at the bottom of the porcelain. Several parametric studies are also performed to determine the optimum physical properties of the FPS.
机译:电力传输变电站易受地震激励下的潜在损害的影响。变电站供应中的两种主要地震故障模式是:脆性绝缘体的破损和导体端部配件。本文提出了有效的隔离策略,用于在避雷器(LA)相邻的电容电压互感器(CVT),包括邻近避雷器(LA)的电容电压互感器(CVT)的有效隔离策略。提出了两种不同的策略,案例A:在CVT底部的基础上的基础隔离的实施,而LA保持固定基地,案例B:在LA底部的基础隔离的实施,而CVT保持固定-根据。 CVT和LA都在动态励磁期间使用电缆彼此连接。通过增量动态分析(IDA)测量概率的地震行为,提出了一系列适当的损伤状态。最后,脆性曲线用于两个系统。发现摩擦摆动系统(FPS)隔离器具有降低由强烈地运动引起的弯曲应力的可能性。该研究表明,当FPS放置在LA下,即CASE B(如图A的情况a),在减少瓷器底部的力和应力方面提高了系统的效率。还进行了几项参数研究以确定FPS的最佳物理性质。

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