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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Rig and Engine Validation of the Nonlinear Forced Response Analysis Performed by the Tool OrAgL
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Rig and Engine Validation of the Nonlinear Forced Response Analysis Performed by the Tool OrAgL

机译:由工具OrAgL执行的非线性强迫响应分析的钻机和发动机验证

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摘要

Since the first nonlinear forced response validation of frictionally coupled bladed disks, more than 20 years have passed, and numerous incremental modeling and simulation refinements were proposed. With the present work, we intend to assess how much we have improved since then. To this end, we present findings of an exhaustive validation campaign designed to systematically validate the nonlinear vibration prediction for the different friction joints at blade roots, interlocked shrouds and under-platform dampers. An original approach for the identification of crucial contact properties is developed. By using the dynamic Lagrangian contact formulation and a refined spatial contact discretization, it is demonstrated that the delicate identification of contact stiffness properties can be circumvented. The friction coefficient is measured in a separate test, and determined as unique function of temperature, preload, wear state. Rotating rig and engine measurements are compared against simulations with the tool OrAgL, developed jointly by the Leibniz Universitat Hannover and the University of Stuttgart, in which state-of-the-art component mode synthesis (CMS) and harmonic balance methods (HBMs) are implemented.
机译:自从首次进行摩擦耦合式叶片盘非线性强制响应验证以来,已经过去了20多年,并且提出了许多增量建模和仿真改进方法。通过目前的工作,我们打算评估自那时以来我们已经取得了多少进步。为此,我们介绍了一项详尽的验证活动的发现,该活动旨在系统地验证叶片根部,联锁罩和平台下阻尼器的不同摩擦接头的非线性振动预测。开发了一种用于识别关键接触特性的原始方法。通过使用动态拉格朗日接触公式和精确的空间接触离散化,可以证明可以避免对接触刚度特性的精细识别。摩擦系数在单独的测试中测量,并确定为温度,预载,磨损状态的唯一函数。汉诺威莱布尼兹大学和斯图加特大学联合开发的OrAgL工具将旋转钻机和发动机的测量结果与仿真结果进行了比较,其中采用了最先进的组件模式综合(CMS)和谐波平衡方法(HBM)已实施。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power》 |2019年第2期|021019.1-021019.9|共9页
  • 作者单位

    MTU Aero Engines AG, Dachauer Str 665, D-80995 Munich, Germany;

    MTU Aero Engines AG, Dachauer Str 665, D-80995 Munich, Germany;

    Univ Stuttgart, Dept Aerosp Engn, Inst Aircraft Prop Syst, Pfaffenwaldring 6, D-70569 Stuttgart, Germany;

    Univ Stuttgart, Dept Aerosp Engn, Inst Aircraft Prop Syst, Pfaffenwaldring 6, D-70569 Stuttgart, Germany;

    Leibniz Univ Hannover, Dept Mech Engn, Inst Dynam & Vibrat Res, Appelstr 11, D-30167 Hannover, Germany;

    Leibniz Univ Hannover, Dept Mech Engn, Inst Dynam & Vibrat Res, Appelstr 11, D-30167 Hannover, Germany;

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