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AN ASSESSMENT OF TURBULENCE MODELS FOR PREDICTING CONJUGATE HEAT TRANSFER FOR A TUBINE VANE WITH INTERNAL COOLING CHANNELS

机译:带有内部冷却通道的涡轮叶片共轭传热的湍流模型评估

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摘要

In this study, five models, including the standard k-epsilon (SKE), realizable k-epsilon (RKE), SST k-omega, transition k-kl-omega, and the v(2)f model, are considered to simulate air flow and heat transfer of a turbine guide vane. The object in this paper is the well-studied NASA C3X turbine vane, for which experimental data are available. Ten internal cylindrical cooling channels are used to cool the blade. Three-dimensional temperature distributions of the turbine vane were obtained by a fluid-solid conjugated model including the external aerodynamic flow, internal convection and heat conduction region within the metal vane. In order to validate the computational results, the temperature distributions, static pressure distributions, and heat transfer coefficient distributions along the vane external mid-span surface are compared with experimental data. The 4-5-2-1 arrangement of the C3X cascade is selected, and the fluid is assumed to be an ideal gas. The results reveal that the SST k-omega turbulence model performs quite well in predicting the conjugate heat transfer. Detailed heat transfer distributions in the main passage are also shown. The representative transitional behavior of the C3X vane on both pressure and suction surfaces is further analyzed. It suggests that the transition behavior plays a significant role in predictions of the boundary-layer behavior, wall temperature distribution, and heat transfer performance.
机译:在这项研究中,包括标准k-ε(SKE),可实现k-ε(RKE),SST k-omega,过渡k-kl-omega和v(2)f模型在内的五个模型被认为可以模拟涡轮导向叶片的气流和传热。本文的目标是经过充分研究的NASA C3X涡轮叶片,可获得其实验数据。十个内部圆柱形冷却通道用于冷却刀片。通过流固共轭模型获得了涡轮叶片的三维温度分布,该模型包括金属叶片内的外部空气流动,内部对流和导热区域。为了验证计算结果,将沿叶片外部中跨表面的温度分布,静压分布和传热系数分布与实验数据进行了比较。选择了C3X级联的4-5-2-1布置,并且假定流体为理想气体。结果表明,SSTk-ω湍流模型在预测共轭传热方面表现很好。还显示了主通道中详细的传热分布。进一步分析了C3X叶片在压力和吸力表面上的代表性过渡行为。这表明过渡行为在边界层行为,壁温分布和传热性能的预测中起着重要作用。

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