故意误配与主要空气动力学效应

C. Martel, J. J. Sanchez
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引用次数: 1

摘要

故意失谐是一种众所周知的减小固有随机失谐的非受控振动放大效应和降低其灵敏度的方法。这个想法是引入一种有意的误配模式,这种模式很小,但比现有的随机误配大得多。相邻叶片的频率通过故意失谐而分开,减少了叶片间耦合的影响,从而减少了随机失谐的影响。本文考虑的情况更为复杂,因为叶片阻尼的主要来源是气动力的影响(就像在频率非常相似的叶片主导模态族中发生的那样)。在这种情况下,阻尼是明确定义的调谐行波,但不是每个叶片。利用渐近失谐模型方法对该问题进行了分析。推导了一个降阶模型,使我们能够理解故意误配的作用机制,并给出了一个简单的估计其有益效果的表达式。将简化模型的结果与实际转子在不同受力条件下的有限元模型的结果进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Intentional Mistuning With Predominant Aerodynamic Effects
Intentional mistuning is a well known procedure to decrease the uncontrolled vibration amplification effects of the inherent random mistuning and to reduce the sensitivity to it. The idea is to introduce an intentional mistuning pattern that is small but much larger that the existing random mistuning. The frequency of adjacent blades is moved apart by the intentional mistuning, reducing the effect of the blade-to-blade coupling and thus the effect of the random mistuning. The situation considered in this work is more complicated because the main source for the blade damping is the effect of the aerodynamic forces (as it happens in a blisk for a family of blade dominated modes with very similar frequencies). In this case the damping is clearly defined for the tuned traveling waves but not for each blade. The problem is analyzed using the Asymptotic Mistuning Model methodology. A reduced order model is derived that allows us to understand the action mechanism of the intentional mistuning, and gives a simple expression for the estimation of its beneficial effect. The results from the reduced model are compared with those from a finite element model of a more realistic rotor under different forcing conditions.
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