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Lumped-parameter-based thermal analysis of a doubly radial forced-air-cooled direct-driven permanent magnet wind generator

机译:基于集总参数的双径向强制风冷直驱永磁风力发电机的热分析

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摘要

A lumped-parameter-based thermal analysis of a direct-driven permanent magnet wind generator with double radial forced-air cooling is presented. In the proposed thermal model, the thermal conduction and convection as well as the heating of the cooling fluid are modeled in terms of thermal resistances. The electromagnetic losses of the generator are calculated by a two-dimensional, non-linear, time-stepping finite element method. The developed thermal calculation model can be applied both to static and transient problems. The performance of the proposed thermal model is compared with the results calculated by using computational fluid dynamics. The presented modeling strategy is implemented into an analytical calculation tool, which is used in the design process of a 3.35 MW high-torque low-speed direct-driven permanent magnet synchronous generator. Experimental results for a 3.35 MW permanent magnet generator are presented.
机译:提出了基于集总参数的直接驱动永磁风力发电机双径向强制风冷的热分析。在提出的热模型中,根据热阻对冷却流体的导热和对流以及加热进行建模。发电机的电磁损耗是通过二维,非线性,时间步长的有限元方法计算的。开发的热计算模型可以应用于静态和瞬态问题。将所提出的热模型的性能与使用计算流体动力学计算出的结果进行比较。所提出的建模策略被实施到一个分析计算工具中,该工具用于3.35 MW高转矩低速直驱永磁同步发电机的设计过程中。给出了3.35 MW永磁发电机的实验结果。

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