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Numerical study on film cooling and convective heat transfer characteristics in the cutback region of turbine blade trailing edge

机译:汽轮机叶片后缘薄膜冷却与对流传热特性的数值研究

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Gas turbine blade trailing edge is easy to burn out under the exposure of high-temperature gas due to its thin shape. The cooling of this area is an important task in gas turbine blade design. The structure design and analysis of trailing edge is critical because of the complexity of geometry, arrangement of cooling channels, design requirement of strength, and the working condition of high heat flux. In the present paper, a 3-D model of the trailing edge cooling channel is constructed and both structures with and without land are numerically investigated at different blowing ratio. The distributions of film cooling effectiveness and convective heat transfer coefficient on cutback and land surface are analyzed, respectively. According to the results, it is obtained that the distributions of film cooling effectiveness and convective heat transfer coefficient both show the symmetrical characteristics as a result of the periodic structure of the trailing edge. The increase of blowing ratio significantly improves the film cooling effectiveness and convective heat transfer coefficient on the cutback surface, which is beneficial to the cooling of trailing edge. It is also found that the land structure is advantageous for enhancing the streamwise film cooling effectiveness of the trailing edge surface while the film cooling effectiveness on the land surface remains at a low level. Convective heat transfer coefficient exhibits a strong dependency with the blowing ratio, which suggests that film cooling effectiveness and convective heat transfer coefficient must be both considered and analyzed in the design of trailing edge cooling structure.
机译:由于其薄的形状,在高温气体暴露下,燃气轮机叶片后缘易于燃烧。该区域的冷却是燃气轮机叶片设计中的重要任务。由于几何形状,冷却通道排列,强度的设计要求以及高热通量的工作条件,后缘的结构设计和分析至关重要。在本文中,构造了后缘冷却通道的3-D模型,并且以不同的吹出比例地研究了具有和无陆的结构。分别分析了薄膜冷却效能和对流传热系数对削减和陆地表面的分布。根据结果​​,获得薄膜冷却效果和对流传热系数的分布均显示出由于后缘的周期性结构而显示的对称特性。吹吹比的增加显着提高了倒塌表面上的薄膜冷却效果和对流传热系数,这有利于后缘的冷却。还发现陆地结构是有利的,用于增强后缘表面的流动膜冷却效果,而陆地表面上的膜冷却效果保持在低水平。对流传热系数表现出强烈依赖性的吹出比,这表明在后缘冷却结构的设计中必须考虑和分析膜冷却效果和对流传热系数。

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