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Effects of Relative Position between a Stator and a Rotor on Steam Condensing Flow in Rotating Machinery

机译:定子与转子之间的相对位置对旋转机械中蒸汽冷凝流的影响

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Flow of steam is different from other gas flows and involves droplet generation in the flow field. This phase-transition affects not only flow aspects, but also machine performance in a negative way. These days, CFD is widely used in machine design and optimization processes, so phase-transition phenomena in steam flows should be considered in CFD to predict the internal flows precisely. In the past, non-equilibrium wet-steam model was implemented on in house code T-Flow and it was applied to steady calculations of a steam turbine model with changing stator/rotor interface. The results showed that mixing plane method is not appropriate to simulate steam condensing flow and frozen rotor method can be affected by relative position between a stator and a rotor. Therefore, steady wet-steam flows with non-equilibrium phase-transition were simulated for a steam turbine model in this study with 4 different stator-rotor positions and their effects on the wet-steam flow fields were investigated in detail.
机译:蒸汽的流量不同于其他气流,并且涉及流场中的液滴生成。这种相变不仅会影响流动方面,还会对机器性能产生负面影响。如今,CFD已广泛用于机器设计和优化过程中,因此CFD中应考虑蒸汽流中的相变现象,以准确预测内部流。过去,非平衡湿蒸汽模型是在内部代码T-Flow上实现的,并且已应用于定/转子接口变化的蒸汽轮机模型的稳定计算。结果表明,混合平面法不适用于模拟蒸汽凝结流,而冻结转子法会受定子与转子之间相对位置的影响。因此,在本研究中,采用4种不同的定子-转子位置,对具有非平衡相变的稳定湿汽流进行了模拟,并详细研究了它们对湿汽流场的影响。

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