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首页> 外文期刊>Journal of Sound and Vibration >Modelling of flutter running waves in turbine blades cascade
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Modelling of flutter running waves in turbine blades cascade

机译:涡轮叶片级联扑振跑波的建模

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摘要

Flutter running waves in turbine blade cascade were often observed at experimental investigation of blades vibrations, but theirs detailed analysis has not yet been sufficiently realized. This contribution tries to explain origin and behavior of running flutter waves in the rotating blade cascade excited by steam flow from the stationary bladed disk. One of possible reasons for existence of running waves are the running periodic forces from steam wakes due to different numbers of blades of stationary and rotating wheels. Properties - velocities, directions and modes - of these forced running waves are shown using computational model of turbine disk with 10 blades. Interaction of this kind of forced excitation with aero-elastic self-excitation - flutter - causes origin of the flutter running waves. These flutter waves, modelled by the Van der Pol formula, are analysed in the paper for this simplified form of aero-elastic self-excitations. (C) 2018 Published by Elsevier Ltd.
机译:在叶片振动的实验研究中经常观察到涡轮叶片级联的颤动跑波,但它们的详细分析尚未充分实现。 这种贡献试图解释在旋转刀片级联中运行颤振波的起源和行为,通过蒸汽流动从固定的叶片圆盘激发。 存在运行波的可能原因之一是由于静止和旋转轮的不同数量的刀片而来自蒸汽奶昔的运行周期性。 属性 - 使用具有10刀片的涡轮盘的计算模型显示这些强制运行波的速度,方向和模式。 这种强制激励与航空弹性自激颤动的相互作用 - 导致扑轮跑波的起源。 通过Van der Pol配方建模的这些颤振在本文中分析了这种简化形式的航空弹性自我激发。 (c)2018年由elestvier有限公司发布

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