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Field suppression of turbo-alternators

机译:涡轮交流发电机的磁场抑制

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摘要

The paper is concerned with the field suppression of synchronous machines by means of a discharge resistor connected across the field winding and with the suitability of such a method for alternators of 100MW and above. Expressions are given for the field current when a 3-phase fault is applied to the armature terminals, and also for the currents and voltages during field suppression. The effect of the discharge resistance value upon the field over-voltages, the field ciucuit-breaker arc duration and the stator fault damage is discussed. Many field suppression tests have been made on turbo-alternators in conjunction with short-circuit tests on the alternator. Results of some of these are presented and are compared with values of theoretical expressions derived as illustrated in the Appendix. The duty on the main and discharge contacts of the field circuit-breaker and methods of proving their suitability for the duties are considered. The use of a synthetic circuit for proving the interrupting capacity of the main contacts is unsuitable if the arcing time is long. Other forms of field suppression are available. These may give improved field suppression but either require more complex circuits or are unlikely to be suitable for very large alternators. It is concluded that the value of the discharge resistance should be determined by the permissible field over-voltate and circuit-breaker arc duration.
机译:本文涉及通过连接在励磁绕组两端的放电电阻器对同步电机进行励磁抑制,以及这种方法是否适用于100MW及以上的交流发电机。给出了三相故障施加到电枢端子时的励磁电流的表达式,以及励磁抑制期间的电流和电压的表达式。讨论了放电电阻值对励磁过电压,励磁断路器电弧持续时间和定子故障损坏的影响。结合交流发电机的短路测试,已经对涡轮交流发电机进行了许多现场抑制测试。介绍其中一些结果,并将其与附录中所示的理论表达式的值进行比较。考虑了现场断路器的主触头和放电触头上的负荷以及证明其适用于负荷的方法。如果电弧放电时间较长,则不宜使用合成电路来证明主触点的中断能力。也可以使用其他形式的场抑制。这些可以改善磁场抑制能力,但是要么需要更复杂的电路,要么不太适合于大型交流发电机。得出的结论是,放电电阻的值应由允许的场过电压和断路器电弧持续时间确定。

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