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UNSTEADY FLOW EFFECT ON NONEQUILIBRIUM CONDENSATION IN 3-D LOW PRESSURE STEAM TURBINE STAGES

机译:非稳态流动对3D低压汽轮机阶段非平衡冷凝的影响

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A numerical study simulating unsteady 3-D wet-steam flows through three-stage stator-rotor blade rows in a low-pressure steam turbine model experimentally conducted by Mitsubishi Heavy Industry (MHI) was presented in the last ASME Turbo Expo by our group. In this study, the previous discussion is extended to the discussion how nonequilibrium condensation is influenced by unsteady wakes and corner vortices from prefaced multi-stage blade rows. Unsteady 3-D flows through three-stage stator-rotor blade rows are simulated assuming nonequilibrium condensation. Flows with a different inlet flow condition are calculated and the results are compared with each other. Instantaneous condensate mass fractions are visualized at different spans and cross sections in the three-stage stator and rotor blade rows. Also the time and space dependent values are plotted and the obtained unsteady flow characteristics are explained.
机译:在三菱重工业(MHI)进行的低压蒸汽涡轮机模型中,模拟不稳定的3-D湿蒸汽流过三级定子-转子叶片行的数值研究在我们的上届ASME涡轮机博览会上进行了介绍。在这项研究中,先前的讨论扩展到了讨论,即非平衡凝结如何受到前置多级叶片行的非稳定尾流和角涡的影响。假设非平衡冷凝,则模拟了流经三级定子-转子叶片行的非稳态3-D流。计算具有不同入口流量条件的流量,并将结果相互比较。在三级定子和转子叶片行中,在不同的跨度和横截面上可以看到瞬时冷凝水的质量分数。还绘制了与时间和空间有关的值,并解释了获得的非稳态流动特性。

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