New high voltage insulation system for air-cooled turbine generators

N. Urakawa, S. Takada, M. Tsukiji, W. Bito, A. Yamada, T. Umemoto
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引用次数: 5

Abstract

For competitive power generation all over the world, air-cooled turbine generators tend to be used with large capacity up to a few hundred MVA, while hydrogen-cooling was adopted ten years ago. At the same time, the customers require compact, cost-effective generators. To meet such a new trend of power market, Mitsubishi Electric has developed a new high-voltage global impregnation insulation system that is applicable up to 250 MVA class air-cooled generators and started to apply it in 1998. In large-scale power generators, thermal fatigue due to the different coefficient of thermal expansion of conductor, insulation and core is supposed to be the biggest problem. Therefore, thermal and stress and strain analyses in stator windings were carried out by making full use of the latest numerical simulation techniques and were verified by thermal cycle tests of full-size models. Dielectric and thermo-mechanical properties of the insulation were also evaluated by experimental techniques such as electrical lifetime tests and mechanical fatigue tests with model coils. From the comparison between the analytical and the experimental results, it was shown that the new insulation system has sufficient dielectric and thermo-mechanical properties through the lifetime of turbine generators. Furthermore, the dielectric and mechanical reliabilities of the insulation are improved by the newly developed nonadhesive plane.
新型风冷汽轮发电机高压绝缘系统
在世界各国具有竞争力的发电中,风冷式汽轮发电机往往采用大容量,高达几百MVA,而氢冷却在十年前就被采用了。同时,客户需要紧凑、经济的发电机。为了适应电力市场的这种新趋势,三菱电机开发了一种适用于250 MVA级风冷发电机的新型高压全球浸渍绝缘系统,并于1998年开始应用。在大型发电机中,由于导体、绝缘和铁芯的热膨胀系数不同而产生的热疲劳被认为是最大的问题。因此,充分利用最新的数值模拟技术对定子绕组进行了热分析和应力应变分析,并通过全尺寸模型热循环试验进行了验证。通过电寿命试验和模型线圈机械疲劳试验等试验技术,对绝缘材料的介电性能和热力学性能进行了评价。分析结果与实验结果的对比表明,在汽轮发电机的使用寿命内,新型绝缘系统具有足够的介电性能和热力学性能。此外,新开发的非粘接平面提高了绝缘材料的介电和机械可靠性。
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