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INFLUENCE OF PASSAGE FLOW ON TIP FILM COOLING CHARACTERISTICS

机译:通道流量对尖端膜冷却特性的影响

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Three-dimensional simulations of the squealer tip on the GE-E3 blade with eight film cooling holes were carried out. The effect of different blade spans and different blowing ratios on the tip flow and cooling performance was revealed with the k-8 model. For the squealer tip, the depth of the cavity and the height of the tip clearance were fixed, the influence of different spans (10%, 25%, 50%, 75% and 100% span) on the tip heat transfer was investigated. It was found that the velocity field above the blade tip and the heat transfer distribution on the groove floor for the 10% span (cut-back span) model had no difference from that for the 100% span (whole span) model obviously. However, the leakage flow for the 10% span model showed larger interaction with the passage flow. With different spans, the effect of different blowing ratios, i.e., M=0.4, 0.8 and 1.2, was investigated. Increasing the blowing ratio (from M=0.4 to 1.2) increased the film cooling effectiveness and made the heat transfer coefficients of all the models smaller. Because the cut-back model for the 10% span had similar tip flow field with the 100% span model, the simulation for the 10% span model could be used to find out the tip flow and heat transfer for the 100% span model.
机译:对带有八个薄膜冷却孔的GE-E3叶片上的刮浆器尖端进行了三维模拟。 k-8模型揭示了不同的叶片跨度和不同的吹风比对叶尖流量和冷却性能的影响。对于squealer尖端,腔的深度和尖端间隙的高度是固定的,研究了不同跨度(跨度为10%,25%,50%,75%和100%)对尖端传热的影响。结果发现,对于10%跨度(切向跨度)模型,叶片尖端上方的速度场和槽底的传热分布与100%跨度(全跨度)模型没有明显差异。但是,跨度为10%的模型的泄漏流量显示出与通道流量更大的相互作用。用不同的跨度,研究了不同的吹风比,即M = 0.4、0.8和1.2的影响。将吹塑比增加(从M = 0.4到1.2)可以提高薄膜冷却效果,并使所有模型的传热系数更小。由于10%跨度的缩减模型与100%跨度模型具有相似的尖端流场,因此10%跨度模型的仿真可用于找出100%跨度模型的尖端流动和传热。

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