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Effects of structural coupling on mistuned cascade flutter and response

机译:结构耦合对阶跃颤动和响应的影响

摘要

The effects of structural coupling on mistuned cascade flutter and response are analytically investigated using an extended typical section model. This model includes both structural and aerodynamic coupling between the blades. The model assumes that the structurally coupled system natural modes were determined and are represented in the form of N bending and N torsional uncoupled modes for each blade, where N is the number of blades and, hence, is only valid for blade dominated motion. The aerodynamic loads are calculated by using two dimensional unsteady cascade theories in the subsonic and supersonic flow regimes. The results show that the addition of structural coupling can affect both the aeroelastic stability and frequency. The stability is significantly affected only when the system is mistuned. The resonant frequencies can be significantly changed by structural coupling in both tuned and mistuned systems, however, the peak response is significantly affected only in the latter.
机译:使用扩展的典型截面模型分析研究了结构耦合对模糊级联颤振和响应的影响。该模型包括叶片之间的结构和空气动力学耦合。该模型假定已确定结构耦合系统的自然模式,并以每个叶片N个弯曲和N个扭转非耦合模式的形式表示,其中N是叶片的数量,因此仅对叶片主导的运动有效。通过在亚音速和超音速流态下使用二维非定常级联理论来计算空气动力载荷。结果表明,结构耦合的加入可以影响气动弹性稳定性和频率。仅当系统处于混乱状态时,稳定性才会受到明显影响。共振频率可以通过调谐和失谐系统中的结构耦合而显着改变,但是,峰值响应仅在后者中受到显着影响。

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    Kaza K. R. V.; Kielb R. E.;

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  • 年度 1983
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