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EFFECT OF INTERNAL CROSSFLOW ON DOUBLE JET FILM COOLING HOLES OF HELIUM TURBINE BLADES

机译:内部横流对氦涡轮叶片双射流膜冷却孔的影响

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In the present study, effect of internal crossflow on double jet film cooling holes were investigated. In our previous study, four types of film cooling holes was investigated and the double jet holes showed better cooling efficiency. However, in practice, the coolant in high temperature turbine blade has a very high flow rate and turbulence, so it is necessary to take the effect of coolant supply condition at the hole entrance into consideration. So the influence of coolant supply condition was investigated, the plenum condition and the crossflow condition were studied to show the influence of the coolant supply condition. And the cylindrical hole was also investigated as comparison. The results showed that there is a profound effect of how the coolant is supplied to the hole on the film-cooling performance in the near hole region. Therefore, crossflow at the hole entry side has be taken into account when modeling film-cooling.
机译:在本研究中,研究了内部错流对双喷膜冷却孔的影响。在我们以前的研究中,研究了四种类型的薄膜冷却孔,双喷孔显示出更好的冷却效率。然而,实际上,高温涡轮叶片中的冷却剂具有非常高的流量和湍流,因此有必要考虑孔入口处的冷却剂供给条件的影响。因此,研究了冷却剂供给条件的影响,研究了增压条件和错流条件,以显示冷却剂供给条件的影响。并且还研究了圆柱孔作为比较。结果表明,如何将冷却剂供应到孔对近孔区域中的膜冷却性能具有深远的影响。因此,在对薄膜冷却进行建模时,必须考虑到孔入口侧的错流。

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