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A model to study the reduction of turbine blade vibration using the Snubbing Mechanism

机译:利用减振机制研究减小涡轮叶片振动的模型

摘要

Blade vibration reduction is an important task in high performance turbo machinery for power generation, in order to avoid the risk of blade failure due to the overcoming of fatigue limit. A possible way to obtain this result is a contact related phenomenon, i.e. by physically limiting the vibration amplitude on the blade tip leaving a small gap between the shrouds of adjacent blades. When the relative displacement between adjacent blades exceeds the gap, in a certain vibration mode of the blade row, a contact occurs between the shrouds, the relative motion is restricted and energy is dissipated by friction and impact during the contact. This is called the snubbing mechanism.udIn this paper, an original simplified model of bladed disks, in which the snubbing mechanism can occur, is presented and numerical integration in time domain furnishes the time histories of the vibrations of the blades. The level of vibration reduction is then evaluated in some different modes that could be excited for instance by the fluid flow. It is also shown that unlucky combinations of system and excitation parameters can effect also a certain magnification instead of a reduction of the vibration amplitudes.udExperimental results on single blade and blade groups of a steam turbine are used to tune the parameters of the system.
机译:为了避免由于克服疲劳极限而导致叶片失效的风险,降低叶片的振动是用于发电的高性能涡轮机械中的重要任务。获得该结果的一种可能方式是与接触有关的现象,即通过物理地限制叶片尖端上的振动幅度,在相邻叶片的罩之间留下小的间隙。当相邻叶片之间的相对位移超过间隙时,在叶片排的一定振动模式下,在护罩之间发生接触,限制了相对运动,并且在接触期间通过摩擦和冲击耗散了能量。这就是所谓的缓冲机制。 ud本文提出了一种原始的简化的刀片式磁盘模型,在其中可以发生缓冲机制,并且时域中的数值积分提供了叶片振动的时间历史。然后以某些不同的方式评估减振的程度,这些方式可能会被例如流体流动激发。还显示出,系统参数和激励参数的不幸组合也可以实现一定的放大倍率,而不是减小振动幅度。 ud使用汽轮机的单个叶片和叶片组的实验结果来调整系统参数。

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