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Experimental modal analysis of disk-like rotor-stator system coupled by viscous liquid

机译:粘性液体耦合的磁盘状转子定子系统的实验模态分析

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The vibrational behavior of a rotor-stator system coupled by a viscous liquid is investigated experimentally using a test bench with rotor and stator simplified as disks. The understanding of this vibration problem is of particular importance in the design of hydraulic machines such as Francis turbines, pump-turbines or hydraulic pumps, where the elastic rotor is coupled to the adjacent elastic stator by the intermediate water. The especially developed test bench enables high-resolution scan measurements of the rotor and stator disk vibrations by applying the modal analysis method in combination with the laser interferometer technique. We present the mode shapes, eigenfrequencies and damping factors measured over a large number of parameter combinations of the stator thickness, the rotor thickness, the clearance between rotor and stator as well as the rotation speed of the rotor. We identify and discuss fundamental vibration mechanisms of the system (for example, the characterization of varicose and sinuous modes, or the frequency split between co- and counter-rotating modes). The derived experimental results may serve as a benchmark for the validation of simulation models studying the linear vibration including effects of rotation, bias flow and viscous damping. (C) 2019 Elsevier Ltd. All rights reserved.
机译:通过用转子和定子的试验台来实验研究由粘性液体耦合的转子定子系统的振动行为,简化为磁盘。对该振动问题的理解是特别重要的,在诸如粉碎机,泵涡轮机或液压泵之类的液压机器的设计中特别重要,其中弹性转子通过中间水连接到相邻的弹性定子。特别开发的测试台通过将模态分析方法与激光干涉仪技术组合应用,可以通过应用模态分析方法来实现转子和定子盘振动的高分辨率扫描测量。我们提出了在定子厚度,转子厚度,转子和定子之间的大量参数组合上测量的模式形状,特征频道和阻尼因子以及转子之间的间隙以及转子的旋转速度。我们识别和讨论系统的基本振动机制(例如,静脉曲张和蜿蜒模式的表征,或者在协同和旋转模式之间的频率分裂)。衍生的实验结果可以作为研究模拟模型验证的基准,研究包括旋转,偏置流动和粘性阻尼的效果的线性振动。 (c)2019年elestvier有限公司保留所有权利。

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