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EFFECT OF GUIDE VANES IN THE TIP TURN REGION ON HEAT/MASS TRANSFER OF ROTATING TWO-PASS CHANNEL

机译:翻折区域的导流叶片对旋转两通道的传热/传质的影响

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This study investigated convective heat transfer inside a rotating two-pass rectangular channel with guide vanes in the turning region. The objective was to determine the effect of the guide vanes on blade tip cooling. The channel had a hydraulic diameter of 26.67 mm and an aspect ratio of 5, and various guide vane configurations were used in the turning region. The Reynolds number, based on the hydraulic diameter, was held constant at 10,000 while the rotation number was 0.1. The detailed local heat transfer coefficients were determined through naphthalene sublimation using the heat and mass transfer analogy. The heat transfer was high on the trailing surface in the first-pass section and on the leading surface in the second-pass section. The heat transfer on leading and trailing surfaces increased in the rotating channel, but the heat transfer on the tip surface decreased. The peak heat transfer on the tip surface appeared in the middle of the first-pass corner due to the centrifugal force.
机译:这项研究调查了在转向区域内带有导向叶片的旋转两通矩形通道内部的对流传热。目的是确定导向叶片对叶片尖端冷却的影响。通道的水力直径为26.67 mm,长径比为5,在转向区域中使用了各种导向叶片。基于水力直径的雷诺数保持恒定在10,000,而转数为0.1。详细的局部传热系数是通过使用热和传质类比的萘升华法确定的。在第一遍部分的尾随表面和第二遍部分的前导表面上的热传递都很高。在旋转通道中,前表面和后表面上的传热增加,但尖端表面上的传热减少。由于离心力,在尖端表面上的传热峰出现在第一遍拐角的中间。

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