首页> 外文会议>ASME international design engineering technical conferences and computers and information in engineering conference 2011.;vol. 8. >A STUDY OF GEAR ROOT STRAINS IN A MULTI-STAGE PLANETARY WIND TURBINE GEAR TRAIN USING A THREE DIMENSIONAL FINITE ELEMENT/CONTACT MECHANICS MODEL AND EXPERIMENTS
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A STUDY OF GEAR ROOT STRAINS IN A MULTI-STAGE PLANETARY WIND TURBINE GEAR TRAIN USING A THREE DIMENSIONAL FINITE ELEMENT/CONTACT MECHANICS MODEL AND EXPERIMENTS

机译:基于三维有限元/接触力学模型和实验的多级风轮机齿轮传动中齿轮齿根应变的研究

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摘要

Wind energy has received a great deal of attention in recent years in part due to its minimal environmental impact and improving efficiency. Increasingly complex wind turbine gear train designs, well-known failures in gear train rolling element bearings, and the constant push to manufacture more reliable, longer lasting systems generate the need for more advanced analysis techniques. The objectives of this paper are to examine the mechanical design of an Orbital2 flexible pin multi-stage planetary wind turbine gear train using a three dimensional finite element/contact mechanics model and to compare to full system experiments. Root strain is calculated at multiple locations across the facewidth of ring gears from the computational model and compared to experimental data. Gear misalignment and carrier eccentricity are also considered. Design recommendations for improving load distribution across gear facewidths are also discussed.
机译:近年来,风能受到了广泛关注,部分原因是它对环境的影响最小,并且效率提高。越来越复杂的风力涡轮机齿轮系设计,齿轮系滚动元件轴承中的众所周知的故障以及不断努力制造更可靠,使用寿命更长的系统,因此需要更先进的分析技术。本文的目的是使用三维有限元/接触力学模型来研究Orbital2柔性销多级行星风力涡轮机齿轮系的机械设计,并与整个系统实验进行比较。根据计算模型在齿圈的整个齿宽上的多个位置计算根应变,并将其与实验数据进行比较。还考虑了齿轮不对中和齿轮架偏心率。还讨论了设计建议,以改善跨齿轮齿宽的负载分配。

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