首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >3D CFD simulation of the runaway process of a Pelton turbine
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3D CFD simulation of the runaway process of a Pelton turbine

机译:Pelton涡轮机失控过程的3D CFD模拟

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During the runaway process of a Pelton turbine, the runner bears huge amounts of water pressure pulsations and centrifugal forces, which is different from the steady-state condition. In this work, a fine 3D CFD simulation of the runaway process of a Pelton turbine is performed. Both the macro-parameter changing patterns of rotational speed, torque and efficiency, and the micro-flow features of pressure pulsations and flow patterns are intensively studied and analyzed. It is found that the maximum runaway speed is 1.78 times of the rated speed, acceleration is the main feature in the early stage of runaway, and the jet fragment breaks away and strikes once again on the lip region and backside of the buckets in the middle and late stages. The multiple strikes make the frequency of pressure pulsations increase, and the cavitation occurs on the backside mold line. This successful 3D simulation shows that it is possible to simulate other transient processes of Pelton turbines and conduct fluid-structure interaction analysis of the runner.
机译:在Pelton涡轮机的失控过程中,转轮承受着巨大的水压脉动和离心力,这与稳态条件不同。在这项工作中,对Pelton涡轮机的失控过程进行了精细的3D CFD仿真。对转速,转矩和效率的大参数变化模式,以及压力脉动和流量模式的微流特征都进行了深入的研究和分析。发现最大失控速度是额定速度的1.78倍,加速是失控早期的主要特征,射流碎片破裂并再次撞击中部铲斗的唇缘和后侧和后期。多次撞击使压力脉动的频率增加,并且在背面模具线上发生气穴现象。这种成功的3D模拟表明,有可能模拟Pelton涡轮机的其他瞬态过程并进行转轮的流固耦合分析。

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