汽轮发电机槽层间短路的检测与分析

P. S. Kumar
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引用次数: 2

摘要

在役汽轮发电机磁芯钢叶之间由于槽壁缺陷、层间绝缘损伤和绕组故障等原因会发生短路。长期未被发现的缺陷,会导致出现热点、熔芯和微动。电磁磁芯缺陷检测器是一种状态评估诊断(CAD)数字工具,用于机器诊断人员查看磁芯损伤。由于能源效率和安全规定,电厂客户更喜欢这种低感应精度的识别方法,而不是层流短路的高通量环测试。本文主要对电芯故障电流信号进行分析,定位槽附近铁芯损伤。简要介绍了在安培定律和法拉第定律基础上的电磁感应原理。现代EL CID设备的特点突出。提出了基于感应电流模式的故障分类方法。对铁芯缺陷修复前后的各种波形报告进行了实例分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Interlaminar short circuits in slots of turbine generators: Detection and analysis
Short circuits occur in between steel leaves of magnetic core of turbine generators in service due to slot wall imperfections, inter laminar insulation damage and winding faults. Undetected defects for long time, results into hot spots, core fusion and fretting. EL CID - ELectromagnetic Core Imperfection Detector, a Condition Assessment Diagnosis (CAD) digital tool is engaged by machine diagnosticians to look at core damages. Power plant customers prefer this low induction precision identification method to high flux ring test for laminar shorts due to energy efficiency and safety provisions. This paper focuses on analysis of fault current signals of EL CID to locate core damages in the vicinity of slots. EL CID principles are briefed which works on Ampere's law and Faraday's law. Modern EL CID equipment features are highlighted. Fault classification with respect to induced current pattern is presented. Case studies of various waveform reports of EL CID before and after repair of core defects are presented.
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