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Heating the Starter with Magnetoelectric Excitation During Hot-Start and Dry Motoring of a Gas-Turbine Engine

机译:燃气轮机发动机热启动和干式驱动过程中用磁电激励对启动器进行加热

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The electric start of a gas-turbine engine (GTE) in gas transport systems is advantageous over turbo-expander start. Serially produced starts based on asynchronous motors with a squirrel-cage rotor are inferior to magnetoelectric excitation based on energy performance. This paper dwells upon designing a magnetoelectric-excitation starter whose inductor has permanent magnets either inside the rotor core or on the surface. We have designed, produced, and tested a number of 65- to 250-kW starters that are considerably more powerful than their counterparts in terms of power density. We herein examine machine heating during the hot start and dry motoring of a GTE. The unsteady problem of computing the starter temperature field is solved by the finite-element method in 2D and 3D formulations. The results are compared to the empirical data. We draft guidelines on choosing the insulation materials for the grooves and frontal parts of the stator winding.
机译:气体输送系统中的燃气涡轮发动机(GTE)的电启动优于涡轮膨胀机启动。基于具有鼠笼形转子的异步电动机的批量生产的起动器不如基于能量性能的磁电励磁器。本文着重于设计一种磁电励磁起动器,其电感器在转子铁心内部或表面具有永久磁铁。我们已经设计,生产和测试了许多65至250 kW的起动器,它们在功率密度方面比同类起动器要强大得多。我们在这里检查GTE的热启动和干驱动过程中的机器加热情况。通过2D和3D公式中的有限元方法解决了计算启动器温度场的不稳定问题。将结果与经验数据进行比较。我们起草了有关为定子绕组的凹槽和前部选择绝缘材料的准则。

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