首页> 外文期刊>Journal of Thermal Science and Engineering Applications: Transactions of the ASME >High Rotation Number Effect on Heat Transfer in a Leading Edge Cooling Channel of Gas Turbine Blades With Three Channel Orientations
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High Rotation Number Effect on Heat Transfer in a Leading Edge Cooling Channel of Gas Turbine Blades With Three Channel Orientations

机译:高转数对三通道定向燃气轮机叶片前缘冷却通道传热的影响

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摘要

Heat transfer in a leading edge, triangular-shaped cooling channel with three channel orientations under high rotation numbers is investigated in this study. Continuous ribs and V-shaped ribs (P/e = 9, e/D_h = 0.085), both placed at an angle (α = 45 deg) to the mainstream flow, are applied on the leading and trailing surfaces. The Reynolds number range is 15,000-25,000 and the rotation number range is 0-0.65. Effects of high rotation number on heat transfer with three angles of rotation (90 deg, 67.5 deg, and 45 deg) are tested. Results show that heat transfer is influenced by the combined effects of rib and channel orientation. When the rotation number is smaller than 0.4, rotation causes a decrease in the average Nusselt number ratios on the leading surface at a channel orientation of 90 deg. Heat transfer is enhanced gradually on the leading surface when the channel orientation varies from 90 deg to 45 deg for both ribbed cases. The highest heat transfer enhancement due to rotation is found at the highest rotation number of 0.65.
机译:在这项研究中,研究了在高旋转数下具有三个通道方向的前缘三角形冷却通道中的热传递。连续肋和V形肋(P / e = 9,e / D_h = 0.085)都与主流方向成一定角度(α= 45度)放置,分别应用于前表面和后表面。雷诺数范围是15,000-25,000,转数范围是0-0.65。测试了高旋转数对三个旋转角度(90度,67.5度和45度)传热的影响。结果表明,传热受肋和通道方向的综合影响。当转数小于0.4时,旋转会导致通道方向为90度时前导表面上的平均努塞尔数比率降低。当两种带肋情况下的通道方向从90度变为45度时,前表面上的传热都会逐渐增强。发现由于旋转而导致的最高热传递增强是在最高旋转数0.65处。

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