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Influence of hole imperfection on jet cross flow interaction

机译:孔缺陷对射流错流相互作用的影响

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The influence of a small hole geometry variation on the jet cross flow interaction is investigated experimentally using particle image velocimetry and liquid crystal thermography. The flow characteristics correspond to film cooling in gas turbines. A production imperfection is represented with the small variation of the hole geometry. The experiments were conducted without and with the hole imperfection at three velocity ratios. If the imperfection is absent, the flow field is stable and clockwise vortices are detected downstream. The imperfection blocks the hole, accelerates the jet and changes the formation of large vortical structures. It produces the additional windward vortices, which influence the flow field and enhance the inflow of the cross-stream towards the cooled surface. The imperfection reduces the film cooling effectiveness.
机译:使用颗粒图像测速仪和液晶热像仪,实验研究了小孔几何形状变化对射流交叉流相互作用的影响。流动特性对应于燃气轮机中的薄膜冷却。孔几何形状的微小变化代表了生产缺陷。以三种速度比在无孔缺陷和有孔缺陷的情况下进行实验。如果没有缺陷,则流场稳定,并在下游检测到顺时针旋涡。缺陷会堵塞孔洞,加速射流并改变大型旋涡结构的形成。它会产生额外的迎风旋涡,这些旋涡会影响流场并增强横流向冷却表面的流入。缺陷会降低薄膜的冷却效率。

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