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Permanent magnet synchronous generator design solution for large direct-drive wind turbines: Thermal behavior of the LC DD-PMSG

机译:大型直驱式风力发电机永磁同步发电机设计解决方案:LC DD-PMSG的热性能

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摘要

Wind is one of the most compelling forms of indirect solar energy. Available now, the conversion of wind power into electricity is and will continue to be an important element of energy self-sufficiency planning. This paper is one in a series intended to report on the development of a new type of generator for wind energy; a compact, high-power, direct-drive permanent magnet synchronous generator (DD-PMSG) that uses direct liquid cooling (LC) of the stator windings to manage Joule heating losses. The main parameters of the subject LC DD-PMSG are 8 MW, 3.3 kV, and 11 Hz. The stator winding is cooled directly by deionized water, which flows through the continuous hollow conductor of each stator tooth-coil winding. The design of the machine is to a large degree subordinate to the use of these solid-copper tooth-coils. Both steady-state and time-dependent temperature distributions for LC DD-PMSG were examined with calculations based on a lumped-parameter thermal model, which makes it possible to account for uneven heat loss distribution in the stator conductors and the conductor cooling system. Transient calculations reveal the copper winding temperature distribution for an example duty cycle during variable-speed wind turbine operation. The cooling performance of the liquid cooled tooth-coil design was predicted via finite element analysis. An instrumented cooling loop featuring a pair of LC tooth-coils embedded in a lamination stack was built and laboratory tested to verify the analytical model. Predicted and measured results were in agreement, confirming the predicted satisfactory operation of the LC DD-PMSG cooling technology approach as a whole.
机译:风是间接太阳能最引人注目的形式之一。从现在开始,将风能转换为电能已经并将继续是能源自给自足计划的重要组成部分。本文是旨在报告新型风能发电机开发的系列文章之一。紧凑的大功率直接驱动永磁同步发电机(DD-PMSG),它使用定子绕组的直接液体冷却(LC)来管理焦耳热损耗。主题LC DD-PMSG的主要参数为8 MW,3.3 kV和11 Hz。定子绕组直接用去离子水冷却,该去离子水流过每个定子齿线圈绕组的连续空心导体。机器的设计在很大程度上要服从这些实心铜线圈的使用。 LC DD-PMSG的稳态温度分布和与时间有关的温度分布都通过基于集总参数热模型的计算进行了检查,这使得考虑定子导体和导体冷却系统中不均匀的热损失分布成为可能。瞬态计算揭示了变速风力涡轮机运行过程中一个示例占空比的铜绕组温度分布。通过有限元分析预测了液冷齿圈设计的冷却性能。建立了一个仪器冷却回路,该回路具有嵌入叠片中的一对LC齿圈,并经过实验室测试以验证分析模型。预测结果与测量结果相符,从而确认了整个LC DD-PMSG冷却技术方案的预期令人满意的运行。

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