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Computational Simulation of Cylindrical Film Hole with Jet Pulsation on Flat Plates

机译:平板上喷射脉动圆柱膜孔的计算模拟

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Film cooling of flat plates with pulsation were simulated using FLUENT™ commercial code with realizable k-e turbulence model. The simulations were done for nominal blowing ratios 0.5 and 1.5, duty cycle = 50%, and Strouhal number ranging from 0.0119 to 1.0. Pulsation helps to lower the amount of cool air from the compressor, which is desirable for film-cooling applications. Pulsed jets performance significantly depends on geometry and blowing ratio. From the cases studied and for steady flow with attached jets, pulsation considerably decreases the film-cooling effectiveness. On the other hand, for steady flow cases where jet liftoff occurs (e.g., higher blowing ratios), pulsation helps to increase the film-cooling effectiveness.
机译:使用具有可实现的k-e湍流模型的FLUENT™商业代码模拟了带有脉动的平板的薄膜冷却。针对标称鼓风比为0.5和1.5,占空比= 50%和Strouhal数为0.0119至1.0的情况进行了仿真。脉动有助于减少来自压缩机的冷空气量,这对于薄膜冷却应用是理想的。脉冲喷射器的性能很大程度上取决于几何形状和吹风比。从所研究的情况以及附带喷嘴的稳定流动来看,脉动会大大降低薄膜的冷却效率。另一方面,对于发生气流喷射升起的稳定流动情况(例如,较高的吹塑比),脉动有助于提高膜的冷却效率。

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