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OVERALL AND ADIABATIC EFFECTIVENESS VALUES ON A SCALED UP SIMULATED GAS TURBINE VANE:-PART Ⅱ-NUMERICAL SIMULATIONS

机译:放大后的模拟燃气轮机叶片的总和绝热效率值:-PARTⅡ-数值模拟

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Conjugate heat transfer (CHT) calculation techniques for the heat transfer analysis of high-pressure turbines (HPT) have been developed during the past few years. Thus, it has become possible to take into account the coupling of the film, internal cooling, external gas flow and the metal diffusive heat transfer. The coupling problem may become extremely important in regions such as the airfoil leading edge and the vicinity of film hole breakout region where heat fluxes and thermal gradients are high. This article presents the results obtained using fully coupled 3D CHT simulations of a simplified film-cooled leading edge model and a NASA C3X vane with suction side film cooling. The results for the two cases are compared against experimental data obtained at University of Texas at Austin. The numerical simulations were conducted using the k-co turbulence model. The leading edge model overall effectiveness predictions are in good agreement with the experiments, especially in the low blowing ratio range (1≤M≤2). For the C3X vane, the CHT results tend to underpredict the midspan and laterally averaged effectiveness due to film liftoff. However, the quantitative agreement is still reasonably good. The different levels of overall effectiveness agreement found between all cases are discussed.
机译:在过去几年中,已经开发出用于高压涡轮(HPT)传热分析的共轭传热(CHT)计算技术。因此,可以考虑薄膜的耦合,内部冷却,外部气流和金属扩散传热。在诸如翼型前缘和热通量和热梯度高的膜孔突破区域附近的区域中,耦合问题可能变得极为重要。本文介绍了使用简化的薄膜冷却前缘模型和带有吸入侧薄膜冷却功能的NASA C3X叶片的完全耦合3D CHT仿真获得的结果。将这两种情况的结果与得克萨斯大学奥斯汀分校获得的实验数据进行比较。使用k-co湍流模型进行了数值模拟。前沿模型的整体有效性预测与实验非常吻合,尤其是在低吹炼比范围(1≤M≤2)的情况下。对于C3X叶片,由于薄膜剥离,CHT结果往往会低估中跨和侧向平均效率。但是,定量协议仍然合理。讨论了所有案例之间发现的不同级别的整体有效性协议。

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