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首页> 外文期刊>ScientificWorldJournal >Effect of Turbulence Intensity on Cross-Injection Film Cooling at a Stepped or Smooth Endwall of a Gas Turbine Vane Passage
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Effect of Turbulence Intensity on Cross-Injection Film Cooling at a Stepped or Smooth Endwall of a Gas Turbine Vane Passage

机译:湍流强度对燃气轮机叶片通道阶梯式或光滑末端跨注射膜冷却的影响

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摘要

This study is concerned with a film cooling technique applicable to the protection of the endwalls of a gas turbine vane. In the experiments, cross-injection coolant flow from two-row, paired, inclined holes with nonintersecting centerlines was utilized. The test model is a scaled two-half vane. The levels of turbulence intensity used in the experiments areT.I.=1.8%, 7%, and 12%. Other parameters considered in the film cooling experiments include three inlet Reynolds numbers(9.20×104 , 1.24×105, and 1.50×105), three blowing ratios (0.5, 1.0, and 2.0), and three endwall conditions (smooth endwall and stepped endwall with forward-facing or backward-facing step). Thermochromic liquid crystal (TLC) technique with steady-state heat transfer experiments was used to obtain the whole-field film cooling effectiveness. Results show that, at low turbulence intensity, increasing Reynolds number decreases the effectiveness in most of the vane passage. There is no monotonic trend of influence by Reynolds number at high turbulence intensity. The effect of blowing ratio on the effectiveness has opposite trends at low and high turbulence levels. Increasing turbulent intensity decreases the effectiveness, especially near the inlet of the vane passage. With a stepped endwall, turbulence intensity has only mild effect on the film cooling effectiveness.
机译:该研究涉及一种适用于保护燃气轮机叶片的端壁的薄膜冷却技术。在实验中,利用来自两排的交叉喷射冷却剂流量,配对与非共用中心线的倾斜孔流动。测试模型是缩放的两半叶片。实验中使用的湍流强度水平.I.i.i.i.i.i.i.i.i. = 1.8%,7%和12%。在薄膜冷却实验中考虑的其他参数包括三个入口雷诺数(9.20×104,1.24×105和1.50×105),三个吹风比(0.5,1.0和2.0)和三个端壁条件(平滑的端壁和阶梯式端壁)面向前部或后向步骤)。使用稳态传热实验的热致变色液晶(TLC)技术用于获得全场薄膜冷却效果。结果表明,在低湍流强度下,增加雷诺数的雷诺数降低了大部分叶片通道的有效性。在高湍流强度下,雷诺数没有单调的影响趋势。吹出比对效果的影响相反,低湍流水平趋势。增加的湍流强度降低了效果,特别是靠近叶片通道的入口。通过阶梯式端壁,湍流强度对薄膜冷却效果仅为轻微影响。

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