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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Frequency-Domain Sensitivity Analysis of Stability of Nonlinear Vibrations for High-Fidelity Models of Jointed Structures
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Frequency-Domain Sensitivity Analysis of Stability of Nonlinear Vibrations for High-Fidelity Models of Jointed Structures

机译:节理结构高保真模型非线性振动稳定性的频域灵敏度分析

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摘要

For the analysis of essentially nonlinear vibrations, it is very important not only to determine whether the considered vibration regime is stable or unstable but also which design parameters need to be changed to make the desired stability regime and how sensitive is the stability of a chosen design of a gas-turbine structure to variation of the design parameters. In the proposed paper, an efficient method is proposed for a first time for sensitivity analysis of stability for nonlinear periodic forced response vibrations using large-scale models structures with friction, gaps, and other types of nonlinear contact interfaces. The method allows using large-scale finite element (FE) models for structural components together with detailed description of nonlinear interactions at contact interfaces. The highly accurate reduced models are applied in the assessment of the sensitivity of stability of periodic regimes. The stability sensitivity analysis is performed in frequency domain with the multiharmonic representation of the nonlinear forced response amplitudes. Efficiency of the developed approach is demonstrated on a set of test cases including simple models and large-scale realistic blade model with different types of non-linearities, including friction, gaps, and cubic elastic nonlinearity.
机译:对于基本非线性振动的分析,非常重要的是,不仅要确定所考虑的振动状态是稳定的还是不稳定的,而且还需要更改哪些设计参数以形成所需的稳定性状态,以及所选设计的稳定性如何敏感,这一点非常重要。燃气轮机结构对设计参数的影响。在提出的论文中,首次提出了一种有效的方法,用于使用具有摩擦,间隙和其他类型的非线性接触界面的大型模型结构对非线性周期强迫响应振动的稳定性进行灵敏度分析。该方法允许对结构部件使用大规模有限元(FE)模型,以及接触界面处非线性相互作用的详细描述。高度精确的简化模型用于评估周期性方案稳定性的敏感性。稳定性敏感度分析是在频域中使用非线性强制响应幅度的多谐波表示进行的。在一组测试案例中证明了所开发方法的效率,这些测试案例包括简单模型和具有不同类型非线性(包括摩擦,间隙和立方弹性非线性)的大规模实际叶片模型。

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