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EFFECT OF ROW SPACING ON THE ACCURACY OF FILM COOLING SUPERPOSITION METHOD

机译:行距对薄膜冷却叠加法准确性的影响

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Film cooling technique is widely used in a modern gas turbine. Many applications in hot sections require multiple film cooling rows to get better cooled. In most situation, the additive effect is computed using Sellers superposition method, but it is not accurate when the hole rows are close to each other. In this paper, row spacing between two rows of cooling hole was investigated by numerical method, which was validated by PSP results. The validation experiments are performed on flat test bench and the freestream is maintained at 25m/s. The inlet boundary conditions of numerical simulations were same with the experiment. Both round hole and shaped hole were investigated at blowing ratio M=0.5, density ratios DR=1.5 and row spacing S/D= 6, 10, 15, 20. It is found that the round hole results by Sellers method are similar to experiment results only at large row spacing, and the results of Sellers are always higher than experimental results. The boundary layer has a big effect on cooling effectiveness for round hole, but very little effect on shaped hole. When the row spacing increase, the difference between experiment and prediction become smaller. The vortex is the major factor to effect the accuracy of superposition method.
机译:薄膜冷却技术被广泛用于现代燃气轮机中。在高温区域中的许多应用都需要多排薄膜冷却行,以更好地冷却。在大多数情况下,累加效果是使用Sellers叠加方法计算的,但是当孔行彼此靠近时,它是不准确的。本文采用数值方法研究了两排冷却孔之间的行距,并通过PSP结果进行了验证。验证实验在平坦的试验台上进行,自由流保持在25m / s。数值模拟的入口边界条件与实验相同。在吹气比M = 0.5,密度比DR = 1.5和行距S / D = 6、10、15、20的情况下研究了圆孔和异形孔。发现,通过Sellers方法得出的圆孔结果与实验相似仅在较大的行距下才能获得结果,并且卖方的结果始终高于实验结果。边界层对圆孔的冷却效果影响很大,而对异形孔的影响很小。当行间距增加时,实验和预测之间的差异会变小。涡旋是影响叠加法精度的主要因素。

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