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Asymptotic description of damping mistuning effects on the forced response of turbomachinery bladed disks

机译:阻尼弥散效应对涡轮机械叶片盘强迫响应的渐近描述

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The effect of mistuning on the vibration of bladed disks has been extensively studied in the past 30 years. Most of these analyses typically cover the case of small variations of the elastic characteristics (mass and stiffness) of the blades. In this work we study the not so frequent case of the forced response of a bladed-disk with damping mistuning. A reduced order model, that provides a simplified description of the dynamics of the system, is derived from the full problem using a consistent asymptotic procedure. The resulting simplified model describes quantitatively the effect of blade to blade damping variation on the vibrational response of the system, and gives precise information on the underlying mechanisms involved in the action of damping mistuning. The reduced order model is applied to compute the forced response of an integrated bladed-disk with mistuning damping, and to locate the damping mistuning pattern that gives maximum amplification of the response. A detailed finite element model is also used to compute the forced response of the mistuned blisk, and the results show an excellent agreement with the predictions obtained from the reduced order model.
机译:在过去的30年中,雾化对叶片盘振动的影响已得到广泛研究。这些分析大多数都涵盖了叶片弹性特征(质量和刚度)的微小变化的情况。在这项工作中,我们研究了不太常见的带有阻尼雾化的叶片盘强制响应的情况。使用一致渐近过程从整个问题中得出了简化的阶次模型,该模型提供了系统动力学的简化描述。由此产生的简化模型定量描述了叶片到叶片的阻尼变化对系统振动响应的影响,并给出了与阻尼不均匀作用有关的潜在机理的精确信息。降阶模型适用于计算带有阻尼阻尼的一体式叶片盘的强制响应,并定位能够最大程度放大响应的阻尼阻尼阻尼模式。一个详细的有限元模型也被用来计算被搅动的炸药的强制响应,结果表明与从降阶模型获得的预测非常吻合。

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