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作 者:周利军 刘桓成[1,2] 高仕斌 江俊飞 王东阳[1,2] 张讥培 ZHOU Lijun;LIU Huancheng;GAO Shibin;JIANG Junfei;WANG Dongyang;ZHANG Jipei(National Engineering and Technology Research Center of Electrification and Automation in Rail Transit,Chengdu 610031,China;School of Electrical Engineering,Southwest Jiaotong University,Chengdu 610031,China)
机构地区:[1]国家轨道交通电气化与自动化工程技术研究中心,四川成都610031 [2]西南交通大学电气工程学院,四川成都610031
出 处:《铁道学报》2018年第7期33-39,共7页Journal of the China Railway Society
基 金:国家自然科学基金(51577159);四川省科技计划项目(2016JY0004)
摘 要:由于变压器铁芯每级叠片的尺寸不同等原因,当前用于电机定子铁芯故障的二维方法难以适用。为得到故障时变压器铁芯局部磁通及涡流分布的变化,进而为优化设计提供相应的仿真依据,本文提出故障时变压器铁芯故障点的等效电导率,且基于此建立牵引变压器三维有限元故障模型;其次利用该模型对故障时变压器铁芯内部的磁通分布、涡流分布以及涡流损耗进行仿真研究;最后采用较精确的涡流损耗计算方法——等效电路法对涡流损耗的仿真结果加以验证。结果表明:该有限元故障模型对涡流损耗的仿真结果与等效电路计算结果相近,证明该模型对变压器片间短路故障仿真的有效性。Due to different size of each lamination layer of a transformer core,the current two-dimensional method for the motor stator core faults is not suitable for transformer core.In order to obtain the change of local magnetic flux and the eddy current distribution of transformer core during its fault,and then provide the appropriate simulation basis for optimized design,firstly,the equivalent conductivity of the fault points was proposed,and then a three-dimensional FEM model of a traction transformer with faults was established.Secondly,the model was used to simulate the flux distribution,the eddy current distribution and the eddy current loss inside the core.Finally,the equivalent circuit method,as a more accurate calculation method of eddy current loss,was utilized to verify the simulation results of the eddy current loss.The results indicate that the simulation data on the eddy current loss calculated by the three-dimensional FEM are similar to the results obtained by the equivalent circuit method.It proves the validity of the model for simulating the transformer's interlaminar faults.
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