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Analysis of and reflection on the short-circuit fault of a large hydraulic generator

机译:大型水轮发电机短路故障的分析与思考

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摘要

As a large hydro-generator carries a heavy load for the power grid, any fault in the generator would have extremely negative consequences for the power system, the power plant as well as for the local or even national economy. To minimise the risk of failure, the design, manufacture and operation of any large hydro-generator necessitates meticulous care and caution. Taking the real case of one power plant in China, this study conducts a detailed analysis of the cause of a failure at its large hydro-generator terminal because of a short-circuit fault. Based on a series of simplified calculations, the analysis finds that the main causes of the failure are 2-fold. On the one hand, instantaneous over-voltage by the short circuit generated strong over current and released huge electro-dynamic forces; on the other hand, the long period of de-excitation inevitably prolonged the short-circuit current, resulting in damage to the generator??s windings as well as to other parts. The analysis uses the notion of instantaneous symmetrical components to explain the instantaneous over-voltage and strong over-current generated by the conversion fault in this particular case. It further emphasises the importance of rapid de-excitation in similar circumstances.
机译:由于大型水轮发电机为电网带来沉重的负担,因此发电机中的任何故障都会对电力系统,发电厂以及当地乃至国民经济产生极为不利的后果。为了最大程度地降低故障风险,任何大型水轮发电机的设计,制造和运行都必须进行精心的维护和谨慎。以中国一家电厂的实际情况为例,本研究对由于短路故障而导致其大型水轮发电机终端发生故障的原因进行了详细分析。根据一系列简化的计算,分析发现导致故障的主要原因是2倍。一方面,短路引起的瞬时过电压会产生强大的过电流,并释放出巨大的电动势。另一方面,长时间的励磁不可避免地延长了短路电流,从而导致发电机绕组以及其他部件的损坏。该分析使用瞬时对称分量的概念来解释这种特殊情况下转换故障所产生的瞬时过电压和强过电流。它进一步强调了在类似情况下快速消除激励的重要性。

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