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ROTATING HEAT TRANSFER MEASUREMENTS ON A MULTI-PASS INTERNAL COOLING CHANNEL - Ⅱ EXPERIMENTAL TESTS

机译:多通道内部冷却通道上的旋转传热测量-Ⅱ实验测试

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摘要

The present contribution is focused on heat transfer measurements on internal cooling channels of a high pressure gas turbine blade in static and rotating conditions. A novel rig designed for the specific purpose was used to assess the heat transfer coefficients on a full internal cooling scheme of an idealized blade. The channel has a multi-pass design. Coolant enters at the blade hub in the leading edge region and move radially outwards inside a two-sided ribbed channel. The second passage is again a two-sided ribbed channel with a trapezoidal cross section of high aspect ratio, while inside the third leg low aspect-ratio cylindrical pin fins are arranged in a staggered configuration to promote flow turbulence. Inside the third passage, the coolant is progressively discharged at the blade trailing edge and finally at the blade tip. The test model differs with respect to the real design only because there is no curvature due to the blade camber. Conversely, the correct stagger angle of the real blade with respect to the rotation axis is preserved. Experiments were performed for static and rotating conditions with engine similar conditions of Re=21000 and Ro=0.074, both defined at the channel inlet. Transient liquid crystal technique was used for the measurement of the heat transfer coefficient (HTC) on both pressure and suction sides internal surfaces of the channel. From the spatially resolved HTC maps available, it is possible to characterize the thermal performances of the whole passage and to highlight the effect of rotation.
机译:本贡献集中于在静态和旋转条件下在高压燃气涡轮叶片的内部冷却通道上的传热测量。针对特定目的设计的新型钻机用于评估理想化叶片的完整内部冷却方案下的传热系数。该通道具有多通道设计。冷却液在前缘区域进入叶片毂,并在两侧带肋的通道内径向向外移动。第二通道再次是具有高纵横比的梯形横截面的双面肋状通道,而在第三支腿内部,低纵横比的圆柱形销翅片以交错构造布置以促进流动湍流。在第三通道内部,冷却剂在叶片后缘处逐渐排出,并最终在叶片尖端处排出。测试模型相对于实际设计有所不同,只是因为没有因叶片外倾角而产生曲率。相反,保留了真实叶片相对于旋转轴的正确错开角度。对静态和旋转条件进行了实验,发动机的相似条件分别为Re = 21000和Ro = 0.074,都定义在通道入口处。瞬态液晶技术用于测量通道压力侧和吸力侧内表面上的传热系数(HTC)。从可用的空间解析HTC映射中,可以表征整个通道的热性能,并突出显示旋转效果。

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