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DESIGN CONSIDERATIONS FOR HIGH SPEED DIRECT DRIVE TURBINE GENERATORS

机译:高速直接驱动涡轮发电机的设计注意事项

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The University of Texas at Austin Center for Electromechanics (UT-CEM) conducted development and testing of a 3 MW high speed generator and turbine drive system for a hybrid vehicle propulsion system as a part of the Advanced Locomotive Propulsion System (ALPS) Program [1]. Several critical design issues were identified that apply to high speed wound field synchronous generators and turbine drive systems. The focus of the paper is directed to the more aggressive designs that, like ALPS, are intended to maximize the power density of the turbine/generator package. Design issues addressed by the paper include:rn1. Thermal management for the armature and field windings;rn2. Structural support and insulation of the rotating field winding;rn3. Design of the brushless exciter and rotating diode array;rn4. Design of the rotor bearings, seals, and dampers;rn5. System dynamic response to sudden load changes.rnThe results of trade studies for selection of the generator technology (wound field, permanent magnet, high temperature superconducting) will also be presented to identify key size/weight and cost drivers in the design process. Lessons learned during the fabrication, assembly, and testing of the ALPS generator will be discussed in this paper, in particular, issues concerning the high pressure stator air cooling system, improvements to the field winding insulation, and field coil installation techniques will be addressed. A companion paper will present the results of testing the high-speed generator and turbine drive system to a 1.5 MW power level at NAVSEA (Philadelphia, PA) and UT-CEM with a fixed resistive load.
机译:德克萨斯大学奥斯汀机电中心(UT-CEM)进行了3 MW高速发电机和涡轮驱动系统的开发和测试,该系统是混合动力车辆推进系统的一部分,是高级机车推进系统(ALPS)计划的一部分[1] ]。确定了适用于高速绕线磁场同步发电机和涡轮机驱动系统的几个关键设计问题。本文的重点是针对更具攻击性的设计,例如ALPS,旨在最大程度地提高涡轮机/发电机组的功率密度。本文解决的设计问题包括:电枢和励磁绕组的热管理; rn2。旋转磁场绕组的结构支撑和绝缘; rn3。无刷激励器和旋转二极管阵列的设计; rn4。转子轴承,密封件和阻尼器的设计; rn5。系统对负载突然变化的动态响应。还将提供有关发电机技术选择的行业研究结果(绕线,永磁体,高温超导),以识别设计过程中的关键尺寸/重量和成本驱动因素。本文将讨论在ALPS发电机的制造,组装和测试过程中获得的经验教训,尤其是涉及高压定子空气冷却系统,励磁绕组绝缘的改进以及励磁线圈安装技术的问题。随附的论文将介绍在固定电阻负载的NAVSEA(费城,宾夕法尼亚州)和UT-CEM上将高速发电机和涡轮驱动系统测试至1.5 MW功率水平的结果。

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