齿槽结构对高温超导直线感应电机水平推力影响  

Effects of alveolar structure on HTS linear induction motor horizontal thrust

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作  者:李继红[1] 刘斌[1] 曹聪聪[1] 方进[1] 

机构地区:[1]北京交通大学电气工程学院,北京100044

出  处:《低温与超导》2014年第7期39-43,共5页Cryogenics and Superconductivity

摘  要:齿槽结构参数对高温超导直线感应电机性能有重要影响。为了具体研究这些结构参数对电机性能的影响,通过2D瞬态场有限元分析,分别研究了槽宽、槽高、齿宽对电机的电磁特性,高温超导绕组所受最大垂直场以及电机最大通电电流的影响,得到高温超导电机最大通电电流与槽宽、槽高的关系,得到结构优化后的临界槽宽以及临界槽高。通过研究分析表明,优化的齿槽结构参数有利于提高高温超导直线感应电机的通流能力,增大电机的电磁推力。The alveolar structure parameters have significant effects on the performance of high temperature superconducting (HTS) linear induction motor. In order to study the effects of these structure parameters on the motor performance, using the transient 2D finite element analysis in this paper, the effects of slot width, slot height, and tooth width on electromagnetic proper- ties of motor, the maximum vertical field of high superconducting windings and the maximum operating current of the motor were discussed respectively. Relationship among the maximum operating current of HTS motor, slot width, slot height was gotten. In addition , we obtained the critical slot width and critical slot height of structure optimized. The research and analysis in this paper show that the alveolar structure parameters optimized can be in favor of improving the current flow capacity and increasing electromagnetic force of the HTS linear induction motor.

关 键 词:高温超导直线感应电机 有限元分析 临界槽宽 临界槽高 

分 类 号:TM346[电气工程—电机]

 

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