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AEROTHERMAL PERFORMANCE OF STREAMWISE AND COMPOUND ANGLED PULSATING FILM COOLING JETS

机译:流线型和复合成角度脉动薄膜冷却射流的气动性能

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The quantification of aerothermal loss is carried out for streamwise and compound angled film cooling jets with and without large scale pulsation. This paper reports on the simultaneous measurements of the unsteady pressure and temperature field of streamwise and a 60° compound angled film cooling jet, both with a 30° surface angle over a flat plate with no pressure gradients. Turbine representative non-dimensionals in terms of the geometry and operating conditions are studied. The main flow is heated, more than the injected flow to have a temperature difference and hence a density ratio of 1.3, while the blowing ratio is maintained at 2. The entropy change, derived from pressure and temperature measurements, is calculated by using modified reference conditions to better reflect the losses in both the jet and the freestream. The effects of the periodic unsteadiness associated with rotating machinery are simulated by pulsating the jets. These effects are documented through time-resolved entropy change contours. Mass averaged entropy and kinetic energy loss coefficients seem to be apt quantities for comparing aerothermal performance of streamwise and compound angled injection. It is observed that the mass averaged entropy loss of a streamwise jet doubles when it is pulsated whereas that of a compound angled jet increases by around fifty percent. It may be conjectured from the measurements shown in this study that streamwise oriented jets suffer most of their entropy losses at the hole exit due to separation whereas in compound angled jets, downstream thermal mixing between the jet and the freestream,is the dominant mechanism.
机译:空气热损失的定量是针对具有和不具有大范围脉动的流和复合角膜冷却喷嘴进行的。本文报道了同时测量流向和60°复合角膜冷却射流的非定常压力和温度场的情况,两者在平板上的表面角均为30°,且没有压力梯度。研究了涡轮的几何尺寸和运行条件方面的代表性尺寸。在吹气比保持为2的同时,主流比被注入的流更多地被加热,从而具有一定的温度差,因此密度比为1.3,而从压力和温度测量得出的熵变是通过使用修改后的参考值来计算的更好地反映喷气机和自由流中的损失的条件。通过使射流脉动来模拟与旋转机械有关的周期性不稳定性的影响。这些效果通过时间分辨的熵变化轮廓来记录。质量平均熵和动能损失系数似乎是比较流向喷射和复合角度喷射的空气热性能的合适量。可以观察到,当被脉动时,气流射流的质量平均熵损失增加了一倍,而复合角度射流的质量平均熵损失则增加了约百分之五十。从本研究中显示的测量结果可以推测,由于分离,沿流取向的射流在孔出口处遭受大部分熵损失,而在复合成角度的射流中,射流与自由流之间的下游热混合, 是主导机制。

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