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Dynamic Analyses of the Hydro-Turbine Generator Shafting System Considering the Hydraulic Instability

机译:考虑水力不稳定性的水轮发电机组轴系动力学分析

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Hydraulic instability is a complex factor causing the vibration of hydro-turbine generator shafting system (HGSS), and the mechanism is the uneven distribution of flow along the circumference. The common reasons for this phenomenon include the inconsistency of the blade exit flow angle, the relay stroke and the guide vane opening. This paper mainly focuses on the research of the hydraulic instability caused by the inconsistency of the blade exit flow angle. Firstly, based on the Kutta-Joukowski theorem, the hydraulic unbalance force model is firstly presented. Then, considering the chain reaction among the hydraulic, mechanical and electrical instability, a combined nonlinear mathematical model of the HGSS is established. Finally, by using numerical simulation, the dynamic characteristics of the HGSS with the changing of the deviation of the blade exit flow angle, the blade exit diameter and the guide vane opening angle are analyzed. Moreover, it is found that the hydraulic instability determines the overall changing trend of the shafting dynamic behaviors. In addition, some stable ranges of the HGSS are distinguished. But above all, these results can efficiently provide a reference for the design and manufacture of hydro-turbine blades and the operation of hydropower stations.
机译:水力不稳定性是导致水轮发电机轴系(HGSS)振动的一个复杂因素,其机理是沿圆周的流量分布不均匀。造成这种现象的常见原因包括叶片出口流角,中继冲程和导叶开口不一致。本文主要研究叶片出口流角不一致引起的水力不稳定性。首先,基于Kutta-Joukowski定理,首先提出了液压不平衡力模型。然后,考虑液压,机械和电气不稳定性之间的连锁反应,建立了HGSS的组合非线性数学模型。最后,通过数值模拟,分析了随着叶片出口流角,叶片出口直径和导叶张角的变化而变化的HGSS的动态特性。此外,发现水力不稳定性决定了轴系动力学行为的总体变化趋势。此外,还区分了HGSS的一些稳定范围。但最重要的是,这些结果可以有效地为水轮机叶片的设计和制造以及水电站的运行提供参考。

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