Influence of Rotor Damping Bars on Rotor Temperature Rise of Synchronous Condenser after Single-Phase Short-Circuit Fault

Guorui Xu, Zeyu Yuan, Peidong Hu, Wenmao Liu, Weili Li, Y. Zhan, Haisen Zhao
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引用次数: 1

Abstract

The main function of a synchronous condenser (SC) is to provide continuous and transient reactive power for the Ultra High Voltage Direct Current (UHVDC) converter station or the new energy power grid. However, the temperature rise of the rotor large teeth is the main factor which limits the transient operation ability of the synchronous condenser (SC). In this paper, a rotor structure of the SC with the rotor damping bars made of different materials in the rotor large teeth is proposed to reduce the temperature rise of the rotor large teeth. In order to obtain the influence of the damping bars on the temperature rise, the rotor loss and temperature distribution of a 300-MVar SC under the single-phase short-circuit fault are calculated by coupling the electromagnetic field, loss and temperature field models of the SC with the models of the power grid. For the damping bars made of the copper, aluminum and stainless steel, the rotor maximum temperature rises are calculated and compared. According to the maximum permissible temperature of the rotor core, the effect of the damping bars on the large teeth on the operating ability of the SC is obtained. This study can provide the theoretic basis for improving the operating ability of the SC under the single-phase short-circuit fault.
单相短路故障后转子阻尼棒对同步冷凝器转子温升的影响
同步电容器(SC)的主要功能是为特高压直流(UHVDC)换流站或新能源电网提供连续和暂态无功功率。然而,转子大齿的温升是限制同步冷凝器暂态运行能力的主要因素。为了降低转子大齿的温升,本文提出了一种在转子大齿内采用不同材料制作转子阻尼棒的转子结构。为了获得阻尼棒对温升的影响,通过将300 mvar直流电机的电磁场、损耗和温度场模型与电网模型耦合,计算了单相短路故障下直流电机转子的损耗和温度分布。对铜、铝、不锈钢三种阻尼棒的转子最大温升进行了计算和比较。根据转子铁心的最高允许温度,得到了大齿上阻尼棒对SC工作能力的影响。该研究可为提高电网在单相短路故障下的运行能力提供理论依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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