Abridgment of damper windings for hydroelectric generators

C. Wagner
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引用次数: 1

Abstract

The severity of unsymmetrical system faults is affected by the negative sequence impedance of the connected machines. These impedances in turn depend largely upon the character of damper windings. The paper discusses the effect of amortisseur or damper windings upon both the real and reactive components of the negative sequence impedance. Machines without damper windings possess the highest negative sequence reactance and from this point of view, are the more desirable; but machines with high-resistance damper windings possess the highest negative sequence resistance. Calculations show that combining the effect of resistance and reactance, the high-resistance damper is the more desirable. In the event of system oscillations, low-resistance copper damper windings produce the greatest damping of the mechanical movement; however, this effect is unimportant during and following a system fault except in the rather rare case in which the system is so constituted that pull-out takes place as a result of compound oscillations following a disturbance. Consideration is given also to a special type of double-deck damper winding.
水轮发电机阻尼器绕组的缩短
不对称系统故障的严重程度受连接机器的负序阻抗的影响。这些阻抗反过来又在很大程度上取决于阻尼器绕组的特性。本文讨论了有源或阻尼器绕组对负序阻抗实分量和无功分量的影响。没有阻尼器绕组的机器具有最高的负序电抗,从这个角度来看,是更可取的;但具有高阻阻尼器绕组的机器具有最高的负序电阻。计算表明,综合考虑电阻和电抗的影响,高阻阻尼器更为理想。在系统振荡的情况下,低阻铜阻尼器绕组对机械运动产生最大的阻尼;然而,在系统故障期间和之后,这种影响是不重要的,除非在相当罕见的情况下,系统是由扰动后的复合振荡引起的。还考虑了一种特殊类型的双层阻尼器绕组。
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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