首页> 外文会议>ASME power conference >ROOT CAUSE FAILURE ANALYSIS OF A 373 MEGAWATT STEAM TURBINE GENERATOR EXHIBITING BOTH REVERSIBLE AND IRREVERSIBLE THERMAL SENSITIVITY
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ROOT CAUSE FAILURE ANALYSIS OF A 373 MEGAWATT STEAM TURBINE GENERATOR EXHIBITING BOTH REVERSIBLE AND IRREVERSIBLE THERMAL SENSITIVITY

机译:373兆瓦汽轮机发生器的根本原因分析,展示可逆和不可逆热敏性

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This paper presents a case study of a root cause failure analysis of a 373 MW (nominal) steam turbine generator that exhibited both "reversible" and "irreversible" thermal sensitivity vibratory behavior, as well as reduced output, resulting from a unique rotor winding insulation failure mode. An analysis of the historical vibration behavior of the generator is presented along with the techniques applied to diagnose the source of vibration, which included flux-probe testing, full-speed varied-load vibration diagnostics, and an inspection of the rotor field winding followed by a full-field rewind. These techniques allowed for an in-situ root cause analysis, which proved effective in reducing the generating unit's disassembly, repair and reassembly time, and assuring the steam turbine's availability for the peak seasonal electric period.
机译:本文提出了一种案例研究了373 MW(标称)汽轮机发生器的根本原因分析,其呈现“可逆”和“不可逆”热敏振动行为,以及由独特的转子绕组绝缘导致的输出减少故障模式。提出了对发电机的历史振动行为的分析以及应用于诊断振动源的技术,包括磁通探针测试,全速变化负载振动诊断,以及转子场绕组的检查。一个全场倒带。这些技术允许原位根本原因分析,证明有效地减少了发电机的拆卸,修理和重新组装时间,并确保蒸汽涡轮机的峰季节电时的可用性。

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