Stator coil insulation for modern air-cooled generators

F. Emery
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引用次数: 1

Abstract

Stator coils in modern air cooled generators are subject to high electrical, mechanical, and thermal stress. In addition, operation in the air environment doesn't offer the dielectric advantages of operating in high pressure hydrogen. These three insulation stress factors are well known and for the most part understood with respect to the factors taken into account when designing air cooled generator stator windings. These three stress factors are considered when selecting the coil materials, the coil geometry, and the rating capabilities of the stator coil. With the movement to increasing the power density of air-cooled generators, it has become more critical to be sure the design constraints are met in the stator coil design. In addition, the coil materials and processing must be improved to meet the demands of the increased stress factors. In addition to the use of high performance coil materials, great improvements have been made in the analysis, testing, and the use of more sosphicated instrumentation for verification testing. The stator coil insulation system used in the modern air cooled generators are designed to meet the high demands placed on the system during generator operation.
现代风冷发电机定子线圈绝缘
现代风冷发电机的定子线圈承受着很高的电气、机械和热应力。此外,在空气环境中操作不提供在高压氢气中操作的介电优势。这三个绝缘应力因素是众所周知的,并且在设计风冷发电机定子绕组时考虑到的因素中,大部分都是可以理解的。在选择线圈材料、线圈几何形状和定子线圈的额定能力时,要考虑这三个应力因素。随着风冷发电机功率密度的不断提高,在定子线圈的设计中,如何满足设计要求变得越来越重要。此外,线圈的材料和加工必须加以改进,以满足应力因子增加的要求。除了使用高性能线圈材料外,在分析,测试和使用更复杂的仪器进行验证测试方面也有了很大的改进。现代风冷发电机的定子线圈绝缘系统是为满足发电机运行时对系统的高要求而设计的。
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