首页> 外文会议>ASME Turbo Expo 2006: Power for Land, Sea, and Air vol.3 pt.B Heat Transfer: General Interest Transition Internal Air and Seals >EFFECT OF JET PULSING ON FILM COOLING, PART 1: EFFECTIVENESS AND FLOWFIELD TEMPERATURE RESULTS
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EFFECT OF JET PULSING ON FILM COOLING, PART 1: EFFECTIVENESS AND FLOWFIELD TEMPERATURE RESULTS

机译:射流脉冲对薄膜冷却的影响,第1部分:效率和流场温度结果

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Pulsed film cooling was studied experimentally to determine its effect on film cooling effectiveness. The film cooling jets were pulsed using solenoid valves in the supply air line. Cases with a single row of cylindrical film cooling holes inclined at 35 degrees to the surface of a flat plate were considered at blowing ratios of 0.25, 0.5, 1.0, and 1.5 for a variety of pulsing frequencies and duty cycles. Temperature measurements were made using an infrared camera, thermocouples, and cold wire anemometry. Hot wire anemometry was used for velocity measurements. The local film cooling effectiveness was calculated based on the measured temperatures and the results were compared to baseline cases with continuous blowing. Phase locked flow temperature fields were determined from cold wire surveys. Pulsing at high frequencies helped to improve film cooling effectiveness in some cases by reducing overall jet liftoff. At lower frequencies, pulsing tended to have the opposite effect. With the present geometry and a steady mainflow, pulsing did not provide an overall benefit. The highest overall effectiveness was achieved with continuous jets and a blowing ratio of 0.5. The present results may prove useful for understanding film cooling behavior in engines, where mainflow unsteadiness causes film cooling jet pulsation.
机译:对脉冲薄膜冷却进行了实验研究,以确定其对薄膜冷却效果的影响。胶片冷却喷嘴在进气管路中使用电磁阀进行脉冲控制。对于各种脉冲频率和占空比,考虑以0.25、0.5、1.0和1.5的吹塑比将一排圆柱状薄膜冷却孔相对于平板表面倾斜35度的情况。使用红外摄像机,热电偶和冷线风速仪进行温度测量。使用热线风速仪进行速度测量。根据测得的温度计算出薄膜的局部冷却效果,并将结果与​​连续吹气的基线情况进行比较。锁相流温度场由冷线测量确定。在某些情况下,高频脉冲可通过减少整体喷射升力来帮助提高薄膜冷却效果。在较低的频率下,脉冲趋向于产生相反的效果。在当前的几何形状和稳定的主流的情况下,脉冲并不能提供整体利益。连续喷射和吹气比为0.5时,可获得最高的总体效率。目前的结果可能有助于理解发动机中的薄膜冷却性能,在这种情况下,主流不稳定会导致薄膜冷却射流脉动。

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