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An experimental investigation of the heat transfer in a ribbed triangular cooling channel

机译:带肋三角形冷却通道传热的实验研究

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摘要

One of the most challenging aspects of gas turbine cooling is the cooling of the first stages of turbine blades. Here the highest external heat load is seen at the leading edge of the blade. The present study investigates the internal cooling in a triangular channel with a rounded edge as a model of a leading edge cooling channel for a gas turbine blade. A transient liquid crystal method is used to measure the heat transfer. Experimental results are reported for a number of new 3D rib configurations for Reynolds numbers between 50 000 and 200 000. From the experimental results it has been found that 60 deg. ribs provide in general higher heat transfer enhancements than 45 deg. ribs. However, this results in extremely high friction factors for the 60 deg. ribs. Taking the local and mean distributions of the heat transfer coefficients (as well as the increase in friction factors) into consideration, it was found that the most promising rib arrangement for leading edge cooling is a 3D rib with 45 deg. angle and double-sided fully overlapped ribs in the arc area. These ribs provide uniform heat transfer in the arc area as well as a high level of the heat transfer coefficients in the channel. The resulting friction factors are in an acceptable range for these ribs.
机译:燃气涡轮机冷却的最具挑战性的方面之一是涡轮机叶片的第一级的冷却。在此,在叶片的前缘处看到了最高的外部热负荷。本研究调查了带有圆形边缘的三角形通道的内部冷却,以此作为燃气轮机叶片前缘冷却通道的模型。瞬态液晶方法用于测量热传递。报告了许多新的3D肋结构的雷诺数在5万到20万之间的实验结果。从实验结果中可以发现60度肋通常提供比45度更高的传热效果。肋骨。但是,这导致60度的摩擦系数极高。肋骨。考虑到传热系数的局部和平均分布(以及摩擦系数的增加),发现用于前沿冷却的最有希望的肋结构是45度的3D肋。弧形区域中的角形和双面完全重叠的肋骨。这些肋在电弧区域提供均匀的传热,并在通道中提供高水平的传热系数。这些肋的摩擦系数在可接受的范围内。

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