科技报告详细信息
Torsional Vibration in the National Wind Technology Center???s 2.5-Megawatt Dynamometer
Sethuraman, Latha1  Keller, Jonathan1  Wallen, Robb1 
[1]National Renewable Energy Lab. (NREL), Golden, CO (United States)
关键词: drivetrain;    dynamometer;    torsional excitation;    torque;    testing;    next-generation drivetrain;    NREL;    NWTC;   
DOI  :  10.2172/1324530
RP-ID  :  NREL/TP--5000-65658
PID  :  OSTI ID: 1324530
学科分类:再生能源与代替技术
美国|英语
来源: SciTech Connect
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【 摘 要 】
This report documents the torsional drivetrain dynamics of the NWTC's 2.5-megawatt dynamometer as identified experimentally and as calculated using lumped parameter models using known inertia and stiffness parameters. The report is presented in two parts beginning with the identification of the primary torsional modes followed by the investigation of approaches to damp the torsional vibrations. The key mechanical parameters for the lumped parameter models and justification for the element grouping used in the derivation of the torsional modes are presented. The sensitivities of the torsional modes to different test article properties are discussed. The oscillations observed from the low-speed and generator torque measurements were used to identify the extent of damping inherently achieved through active and passive compensation techniques. A simplified Simulink model of the dynamometer test article integrating the electro-mechanical power conversion and control features was established to emulate the torque behavior that was observed during testing. The torque response in the high-speed, low-speed, and generator shafts were tested and validated against experimental measurements involving step changes in load with the dynamometer operating under speed-regulation mode. The Simulink model serves as a ready reference to identify the torque sensitivities to various system parameters and to explore opportunities to improve torsional damping under different conditions.
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