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Electromagnetic Design Study of Transverse Flux Enhanced Type Superconducting Wind Turbine Generators

机译:横向磁通增强型超导风力发电机的电磁设计研究

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Transverse flux enhanced type superconducting synchronous machines have been studied for large-capacity wind power generation. The generators have multiple circular superconducting field coils in the rotor and copper armature windings in the stator. A parametric design study and electromagnetic characteristic analysis of the superconducting wind turbine generators (WTGs) have been carried out. The target output is 10 MW for a rotational speed of 10 rpm, and the diameter of the whole coil system is 5 m. Superconducting technology is quite effective for compact and lightweight design of large power capacity, low-speed and high torque generators. Armature and field coil dimensions and the number of poles are key parameters in the design study. FEM analysis was carried out to obtain magnetic flux density, magnetic flux linkage, induced voltage, fundamental generator characteristics, etc. Required superconducting wire length was also estimated.
机译:已经研究了用于大容量风力发电的横向磁通增强型超导同步电机。发电机在转子中具有多个圆形超导磁场线圈,在定子中具有多个铜电枢绕组。已经进行了超导风力发电机的参数设计研究和电磁特性分析。对于10 rpm的转速,目标输出为10 MW,整个线圈系统的直径为5 m。超导技术对于大功率,低速和高扭矩发电机的紧凑轻便设计非常有效。电枢和励磁线圈的尺寸以及极数是设计研究中的关键参数。进行了有限元分析,以获得磁通密度,磁链,感应电压,发电机基本特性等。还估算了所需的超导线长。

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