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Rotordynamic Instabilities Caused by the Fluid Force Moments on the Backshroud of a Francis Turbine Runner

机译:混流式水轮机转轮后盖上流体力矩引起的转子动力学不稳定性

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Severe flexural vibration of the rotor shaft of a Francis turbine runner was experienced in the past. It was shown that the vibration was caused by the fluid forces and moments on the backshroud of the runner associated with the leakage flow through the back chamber. The aim of the present paper is to study the self-excited rotor vibration caused by the fluid force moments on the backshroud of a Francis turbine runner. The rotor vibration includes two fundamental motions, one is a whirling motion which only has a linear displacement and the other is a precession motion which only has an angular displacement. Accordingly, two types of fluid force moment are exerted on the rotor, the moment due to whirl and the moment due to precession. The main focus of the present paper is to clarify the contribution of each moment to the self-excited vibration of an overhung rotor. The runner was modeled by a disk and the whirl and the precession moments on the backshroud of the runner caused by the leakage flow were evaluated from the results of model tests conducted before. A lumped parameter model of a cantilevered rotor was used for the vibration analysis. By examining the frequency, the damping rate, the amplitude ratio of lateral and angular displacements for the cases with longer and shorter overhung rotor, it was found that the precession moment is more important for smaller overhung rotors and the whirl moment is more important for larger overhung rotors, although both types of moment due to the leakage flow can cause self-excited vibration of an overhung rotor.
机译:过去,弗朗西斯涡轮转子的转子轴经历了严重的挠曲振动。结果表明,振动是由流道后盖上的流体力和力矩引起的,该力矩与流经后腔的泄漏流有关。本文的目的是研究由弗朗西斯水轮机转轮后盖上的流体力矩引起的自激转子振动。转子振动包括两个基本运动,一个是仅具有线性位移的回旋运动,另一个是仅具有角位移的旋进运动。因此,在转子上施加两种类型的流体力矩,即由于旋涡引起的力矩和由于旋进引起的力矩。本文的主要重点是阐明每个时刻对悬臂式转子自激振动的影响。用圆盘对流道进行建模,并根据之前进行的模型测试结果评估由泄漏流引起的流道和流道在后盖上的进动力矩。悬臂转子的集总参数模型用于振动分析。通过检查悬臂较长和较短的情况下的频率,阻尼率,横向位移和角位移的振幅比,发现旋进力矩对于较小的悬臂转子更重要,而旋动力矩对于较大的悬臂转子更重要。悬臂转子,尽管由于泄漏流引起的两种力矩都可能引起悬臂转子的自激振动。

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