Electro-thermal-flow coupled analysis of thermal ageing patterns in steam turbine generator insulation under deep peak shaving conditionsOA
Steam turbine generators frequently experience deep peak shaving conditions,in which the performance of insulation is significantlyimpacted by extreme fluctuationsin operating temperature.The degradation of water-internally cooled stator bar insulation under repeated temperature variations is investigated in this study.This study examines the progression of winding insulation characteristics by Frequency Domain Spectroscopy(FDS)test and electro-thermal-hydraulic coupled simulations throughout various thermal ageing cycles.Accelerated thermal ageing experiments are conducted on stator bar specimens.Dielectric parameters are captured by FDS across various thermal ageing cycles to assess the effect of thermal ageing on the electrical properties of primary insulation materials.A stator bar model rated at 22 kV is constructed.Electro-thermal-fluidmultiphysics simulations based on the Finite Element Method are performed to compare and analyze electric fieldstrength and temperature distribution under different thermal ageing cycles.Experimental results demonstrate that dielectric properties of the main insulation material deteriorate as thermal ageing progresses,leading to gradual insulation performance degradation.Simulation analysis indicates that the resulting insulation decline increases surface electric fieldsand temperatures on the stator bar,accelerating thermal aging and establishing a positive feedback mechanism.These findingssupport optimised design of the stator bar''s anti-corona structure to delay insulation aging,offering a theoretical basis for insulation design optimization and equipment lifespan extension in steam turbine generators.
Jianjun Zhang;Xiaoming Yue;Yucheng Sheng;Zhengwei Chen;Jihao Huang;Ling Liu
CR Power Energy Science and Technology Co.,Ltd.,Zhengzhou,450000,ChinaCR Power Energy Science and Technology Co.,Ltd.,Zhengzhou,450000,ChinaCR Power Energy Science and Technology Co.,Ltd.,Zhengzhou,450000,ChinaCR Power Energy Science and Technology Co.,Ltd.,Zhengzhou,450000,ChinaSchool of Electrical Engineering,Xi''an Jiaotong University,Xi''an,710049,China State Key Laboratory of Electric Insulation and Power Equipment,Xi''an Jiaotong University,Xi''an,710049,ChinaSchool of Electrical Engineering,Xi''an Jiaotong University,Xi''an,710049,China State Key Laboratory of Electric Insulation and Power Equipment,Xi''an Jiaotong University,Xi''an,710049,China
信息技术与安全科学
Steam turbine generatorThermal agingFinite element analysisMultiphysics couplingFrequency domain spectroscopy test
《Smart Power & Energy Security》 2025 (4)
P.228-236,9
supported in part by the National Natural Science Foundation of China(No.51977173).
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