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首页> 外文期刊>Journal of turbomachinery >Film Cooling Performance of Converging-Slot Holes With Different Exit-Entry Area Ratios
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Film Cooling Performance of Converging-Slot Holes With Different Exit-Entry Area Ratios

机译:不同出入口面积比的会聚槽孔的薄膜冷却性能

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摘要

Film cooling performances of two kinds of converging-slot-hole (console) with different exit-entry area ratios have been measured using a new transient liquid crystal measurement technique, which can process the nonuniform initial wall temperature. Four momentum ratios are tested. The film cooling effectiveness distribution features are similar for the two consoles under all the momentum ratios. Consoles with smaller exit-entry area ratio produce higher cooling effectiveness. And the laterally averaged cooling effectiveness results show that the best momentum ratio for both consoles' film cooling effectiveness distribution is around 2. For both consoles, the heat transfer in the midspan region is stronger than that in the hole centerline region in the upstream but gradually becomes weaker as flowing downstream. With the momentum ratio increasing, the normalized heat transfer coefficient h/h_o of both consoles increases. In the upstream, the heat transfer coefficient of console with small exit-entry area ratio is higher. But in the downstream, the jets' turbulence and the couple vortices play notable elevating effect on the heat transfer coefficient for large exit-entry area ratio case, especially under small momentum ratios. Consoles with smaller exit-entry area ratio provide better thermal protection because of higher cooling effectiveness. And the distributions of heat flux ratio are similar with those of cooling effectiveness because the influence of r/ on qlqo is larger. For the consoles, smaller exit-entry area ratios produce lower discharge coefficients when the pressure variation caused by the hole shape is regarded as flow resistance.
机译:使用一种新的瞬态液晶测量技术,可以测量两种出入口面积比不同的会聚狭缝孔(控制台)的薄膜冷却性能,该技术可以处理不均匀的初始壁温。测试了四个动量比。在所有动量比下,两个调音台的胶片冷却效率分布特征相似。出入口面积比小的控制台产生更高的冷却效率。横向平均冷却效率结果表明,两个控制台的薄膜冷却效率分布的最佳动量比约为2。对于两个控制台,中跨区域的传热要强于上游孔中心线区域的传热,但逐渐减小随着向下游流动而变得更弱。随着动量比的增加,两个控制台的归一化传热系数h / h_o也增加。在上游,出入口面积比小的控制台的传热系数较高。但是在下游,在出口面积比较大的情况下,尤其是在动量比较小的情况下,射流的湍流和涡旋对传热系数的影响显着。出入口面积比较小的控制台由于具有较高的冷却效率而提供了更好的热保护。由于r /对qlqo的影响较大,所以热通量比的分布与冷却效率的分布相似。对于控制台,当将由孔形状引起的压力变化视为流阻时,较小的出口进入面积比会产生较低的排放系数。

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