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A THREE-REGIME BASED METHOD FOR CORRELATING FILM COOLING EFFECTIVENESS FOR CYLINDRICAL AND SHAPED HOLES

机译:基于三准则的圆柱孔和异型孔膜冷却效率的相关方法

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To cope with high temperature of the gas from combustor, cooling is often used in the hot gas components in gas turbines. Film cooling is one of the effective methods used in this application. Both cylindrical and fan-shaped holes are used in film cooling. There have been a number of correlations published for both cylindrical and fan-shaped holes regarding film cooling effectiveness. Unfortunately there are no definitive correlations for either cylindrical or fan-shaped holes. This is due to the nature of the complexity of film cooling where many factors influence its performance, e.g., blowing ratio, density ratio, surface angle, downstream distance, expansion angle, hole length, turbulence level, etc. A test rig using infrared camera was built to test the film cooling performance for a scaled geometry from a real nozzle guide vane. Both cylindrical and fan-shaped holes were tested. To correlate the experimental data, a three-regime based method was developed for predicting the film cooling effectiveness. Based on the blowing ratio, the proposed method divides the film cooling performance in three regimes: fully attached (or no jet lift-off), fully jet lift-off, and the transition regime in between. Two separate correlations are developed for fully attached and full jet lift-off regimes, respectively. The method of interpolation from these two regimes is used to predict the film cooling effectiveness for the transition regime, based on the blowing ratio. It has been found this method can give a good correlation to match the experimental data, for both cylindrical and fan-shaped holes. A comparison with literature was also carried out, and it showed a good agreement.
机译:为了应对来自燃烧室的气体的高温,经常在燃气轮机的热气部件中使用冷却。薄膜冷却是在此应用中使用的有效方法之一。薄膜冷却同时使用圆柱孔和扇形孔。对于圆柱孔和扇形孔,已经发表了许多有关薄膜冷却效率的相关性。不幸的是,圆柱孔或扇形孔都没有明确的相关性。这是由于薄膜冷却的复杂性所致,其中许多因素都会影响薄膜的性能,例如吹塑比,密度比,表面角度,下游距离,膨胀角,孔长,湍流度等。使用红外热像仪的试验台可以测试真实的喷嘴导流叶片按比例缩放的几何形状的薄膜冷却性能。圆柱孔和扇形孔均经过测试。为了关联实验数据,开发了一种基于三区域法的方法来预测薄膜的冷却效果。基于吹塑比,所提出的方法将膜的冷却性能分为三种状态:完全附着(或无喷射升起),完全喷射升起以及两者之间的过渡态。分别为完全附着和完全喷射升空方案开发了两个独立的相关性。根据吹塑比,使用这两种方案的插值方法来预测过渡方案的薄膜冷却效果。已经发现,对于圆柱孔和扇形孔,该方法都可以提供良好的相关性以匹配实验数据。还与文献进行了比较,显示出很好的一致性。

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