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A Study on Damper Bar and Integrated Rotor Slit of a Field Winding Synchronous Machine

机译:阀门绕组同步机的阻尼杆和集成转子狭缝的研究

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This study focuses on the loss reduction and as a consequence efficiency improvement of a synchronous machine by designing a damper bar. The damper bar position is one of the important design parameters to reduce the electromagnetic loss of the salient pole synchronous machine. The total loss of a synchronous machine with a properly designed damper bar and integrated rotor slit can be even lower than the machine without any damper bar or slit. A parametric study has been conducted to study the influence of the damper bar position and dimension of the damper bar integrated rotor slit by rotor bar slot opening height and width. The generator has been modeled and simulated with a re-designed damper bar and integrated rotor slits, without any damper bars or slits, as well as with slits but without any damper bar, thereafter a quantitative comparison has been conducted. The study has been carried out using 2D finite element method on a Multi-MW range field winding synchronous generator. To investigate the accuracy of the simulation results, the influence of the finite element discretization (FED) has been studied by varying the number of nodes and elements.
机译:本研究专注于减少损失,并通过设计阻尼杆的同步机的后果效率改进。阻尼条位置是减少凸极同步机的电磁损失的重要设计参数之一。具有适当设计的阻尼杆和集成转子狭缝的同步机的总损耗可以低于没有任何阻尼杆或狭缝的机器。已经进行了参数研究以研究阻尼条集成转子狭缝的阻尼条位置和尺寸的影响通过转子杆槽开口高度和宽度。发电机已经用重新设计的阻尼杆和集成的转子狭缝进行建模和模拟,没有任何阻尼条或狭缝,以及狭缝但没有任何阻尼杆,此后已经进行了定量比较。该研究在多MW范围场绕组同步发电机上使用2D有限元方法进行。为了研究模拟结果的准确性,通过改变节点和元素的数量来研究有限元离散化(FED)的影响。

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