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TURBOGENERATOR SPARK EROSION INSPECTION AND REPAIR

机译:涡轮发电机火花腐蚀检查和修复

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Spark erosion has re-emerged in a number of air-cooled generator units installed in the United States from 1998 to 2006. The purpose of this technical paper and presentation is to review new inspection & repair methods to help operators to determine the best repair options.To develop better inspection methods one has to understand the root cause for spark erosion in generator stators. The theory of two different spark erosion phenomena is discussed in this paper. Spark erosion caused by capacitive slot discharges (partial discharges) is a well known effect in high voltage (HV) machines and very dangerous in respect to insulation damage. The vibration sparking phenomenon will also be explained, which is different from the partial discharge (PD) effect caused by interruption of current paths. As a next step inspection methods are described. In the past, inspections to identify spark erosion used only the visual method. This method could only provide the subjective opinion of the inspector and was a single input to decide the condition of the generator stator windings and possible life extension (rewind) solution. In order to give the operators more options, Alstom developed advanced electrical test methods to allow a more accurate condition assessment.The result of multiple inspection methods allows a much better understanding of the stator winding condition. Since spark erosion is a process that deteriorates the insulation of the stator bar over time, additional data points (multiple test methods) can help to utilize multiple repair options that will not require complete rewinding of the stator to reach expected reliability of the generator. Alternative repair options are then discussed in the paper.
机译:从1998年到2006年,在美国安装的许多风冷发电机组中都重新出现了火花腐蚀。本技术文章和演示文稿的目的是回顾新的检查和维修方法,以帮助操作人员确定最佳维修方案为了开发更好的检查方法,必须了解发电机定子中火花腐蚀的根本原因。本文讨论了两种不同的火花腐蚀现象的理论。电容性缝隙放电(局部放电)引起的火花腐蚀在高压(HV)机器中是众所周知的效果,并且在绝缘损坏方面非常危险。也将解释振动火花现象,该现象不同于电流路径中断引起的局部放电(PD)效应。作为下一步,描述了检查方法。过去,检查以识别火花腐蚀的方法仅使用视觉方法。该方法只能提供检查员的主观意见,并且是确定发电机定子绕组状况和可能的寿命延长(倒带)解决方案的单一输入。为了给操作员提供更多选择,阿尔斯通开发了先进的电气测试方法以使状态评估更加准确。多种检查方法的结果使人们对定子绕组的状态有了更好的了解。由于火花腐蚀是随着时间的流逝使定子棒的绝缘性降低的过程,因此额外的数据点(多种测试方法)可以帮助利用多种维修选项,而这些选项不需要完全重绕定子即可达到发电机的预期可靠性。然后在本文中讨论其他维修选项。

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