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Computations of a film cooled turbine rotor blade with non-uniform inlet temperature distribution using a three-dimensional viscous procedure

机译:使用三维粘性程序计算具有不均匀入口温度分布的薄膜冷却涡轮转子叶片

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摘要

A numerical investigation of film cooling on a turbine rotor blade has been carried out. The computations were performed with a 3D-Navier-Stokes code utilizing an unstructured solution adaptive grid methodology. The code uses a low Reynolds number k-epsilon model for prescribing the Reynolds stresses. The results show that there is a significant interaction between the coolant flow and the secondary flow near the hub and the tip of the turbine blade. It was observed that, by blowing on the pressure side of the blade some of the cooling air was transported through the tip gap of the blade to the suction side of the blade where the coolant flow interacts with the secondary flow field.
机译:已经对涡轮转子叶片上的薄膜冷却进行了数值研究。使用非结构化解决方案自适应网格方法,使用3D-Navier-Stokes代码执行计算。该代码使用低雷诺数k-ε模型来规定雷诺应力。结果表明,冷却剂流与涡轮毂和涡轮叶片尖端附近的二次流之间存在显着的相互作用。观察到,通过在叶片的压力侧吹气,一些冷却空气通过叶片的尖端间隙被输送到叶片的吸入侧,在该处冷却剂流与次级流场相互作用。

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