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Special methods for the calculation of temporary overvoltages due to transformer saturation

机译:计算因变压器饱和而引起的临时过电压的特殊方法

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Summary form only given as follows. During power restoration, the energization of a no load transformer can lead to high overvoltages, the amplitude being sensible to initial conditions. This document describes an approach based on the AUTO program, which is a complementary tool to EMTP, and may help the understanding of the behaviour of the electrical circuit. The case of a progressive energization of a transformer is described, with a progressive energization from the hydraulic power plant of Pied de Borne towards the thermal power plant of Tricastin. Tests have been performed by the Exploitation Department, with a progressive voltage rise, the network having a resonant frequency at 164 Hz, with a distortion of the voltage above 0.6 Un, and the presence of the third harmonic, the maximum being obtained after ten seconds. A single phase of the network has been used and equations of this network have been solved with the AUTO program, showing that the network can generate the third harmonic, depending also on the value of the flux in the network, the third harmonic being reached for a value of 0.65 kWh; it has also been validated by EMTP calculations. A time domain approach, with programs like EMTP is however necessary to calculate the maximum overvoltage in a three phase network, especially when the phase to phase insulation of the equipment is concerned. In the case of high overvoltages, palliative solutions can be suggested like synchronizing devices in circuit-breakers, circuit-breakers with resistances and zinc-oxide arresters.
机译:汇总表仅给出如下。在电源恢复期间,空载变压器的通电会导致高过电压,其幅值对初始条件敏感。本文档介绍了一种基于AUTO程序的方法,该方法是EMTP的补充工具,可能有助于理解电路的行为。描述了变压器逐渐通电的情况,其中从皮德·德伯恩(Pied de Borne)的水力发电厂向特里卡斯汀(Tricastin)的火力发电厂进行了逐渐通电。开发部已经进行了测试,电压逐渐升高,网络的共振频率为164 Hz,电压畸变超过0.6 Un,并且存在三次谐波,在十秒钟后达到最大值。已使用网络的单相,并且已通过AUTO程序求解了该网络的方程,表明该网络可以生成三次谐波,这也取决于网络中的磁通量,对于值为0.65千瓦时; EMTP计算也对它进行了验证。但是,必须使用时域方法(例如EMTP)来计算三相网络中的最大过电压,尤其是在涉及设备的相间绝缘时。在高过电压的情况下,可以建议使用姑息解决方案,例如断路器中的同步设备,带电阻的断路器和氧化锌避雷器。

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