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Aeroelastic model

机译:气弹模型

摘要

The Aeroelastic Model using the Principal Shapes of modes (AMPS) is a method used to predict flutter in gas turbine engines. Modem gas turbine engines often include rotors with flexible disks and/or significant blade geometry variations. The AMPS method accounts for the varying blade mode shapes associated with flexible disks as well as changing blade geometry, providing accurate flutter predictions for a large number of modes from a relatively small number of CFD (computational fluid dynamics) simulations. The AMPS method includes determining a smaller set of principal shapes that approximates a larger set of structural modes of interest. Using linear superposition, aerodynamic forces associated with the vibration of the principal shapes can be used to construct the full aerodynamic coupling matrix associated with the structural modes of interest. An eigenvalue equation is solved to determine a damping distribution associated with the structural modes of interest. The damping distribution is predictive of flutter.
机译:使用模态主要形状(AMPS)的气动弹性模型是一种用于预测燃气轮机发动机颤振的方法。现代燃气涡轮发动机通常包括具有柔性盘和/或明显的叶片几何形状变化的转子。 AMPS方法考虑了与软盘相关联的各种叶片模式形状以及叶片几何形状的变化,从而通过相对较少的CFD(计算流体动力学)模拟为大量模式提供了准确的颤动预测。 AMPS方法包括确定一组较小的主形状,该主形状近似于一组较大的目标结构模式。使用线性叠加,可以将与主要形状的振动相关的空气动力用于构造与感兴趣的结构模式相关的完整的空气动力耦合矩阵。求解特征值方程以确定与感兴趣的结构模式相关的阻尼分布。阻尼分布可预测颤动。

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