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HYDRODYNAMIC ADDED MASS AND DAMPING OF THE KAPLAN TURBINE

机译:卡普兰汽轮机的水力附加质量和阻尼

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Kaplan turbine runner rotates in water flow inside an enclosed discharge ring. The vibratory runner motion in the fluid flow induces pressure forces onto the wet runner surfaces with inertia effects conveniently described by the so-called hydrodynamic added mass and damping. These inertia effects influence the wet natural frequencies and the amplitudes. The role of the hydrodynamic added mass and damping in the Kaplan turbine shaft rotor dynamics has not been sufficiently well understood. This paper focuses on comprehensive understanding of these phenomena across the Kaplan design range. The results are based on a method derived from Theodorsen's unsteady thin airfoil theory and on the Finite Element Method (FEM). The former method includes the water flow, the runner rotation and the circulatory effects, which makes it possible to calculate the added damping and evaluate the accuracy of FEM. The most critical vibration modes and shaft line configurations have been identified with inherent weaknesses in typical shaft line models. The added damping has been quantified. The numerical results have been compared to the experimental results. Key words: Kaplan turbine, Kaplan runner, hydrodynamic added mass, added mass of water, hydrodynamic added damping, added damping of water, fluid-structure interaction, shaft rotor dynamics, shaft line rotor dynamics, natural frequency in water.
机译:Kaplan涡轮赛道在封闭式排放环内的水流中旋转。流体流动中的振动流体运动在潮湿的流道表面上诱导压力,具有通过所谓的流体动力学额外的质量和阻尼方便地描述的惯性效果。这些惯性效应影响湿自然频率和幅度。流体动力学额外的质量和阻尼在Kaplan涡轮轴转子动力学中的作用并未充分理解。本文重点介绍了在Kaplan设计范围内全面了解这些现象。结果基于衍生自工弓翼的不稳定薄翼型理论和有限元方法(FEM)的方法。前一种方法包括水流,转轮旋转和循环效果,这使得可以计算添加的阻尼并评估有限元的准确性。最关键的振动模式和轴线配置已被鉴定为典型的轴线模型中固有的弱点。已经量化了增加的阻尼。数值结果已经与实验结果进行了比较。关键词:Kaplan涡轮机,Kaplan跑步者,流体动力学额外的质量,加入质量的水,水动力学增加的阻尼,加入水,流体结构相互作用,轴转子动力学,轴线转子动力学,水中的自然频率。

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