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Rib Turbulator Heat Transfer Enhancements at Very High Reynolds Numbers

机译:罗纹湍流仪在非常高的雷诺数中传热增强

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High-pressure stage gas turbine blades feature serpentine passages where rib turbulators are installed to enhance heat transfer between the relatively colder air bled off from the compressor and the hot internal walls. Most of the prior studies have been restricted to Reynolds number of 90,000 and several studies have been carried out to determine geometrically optimized parameters for achieving high levels of heat transfer in this range of Reynolds number. However, for land-based power generation gas turbines, the Reynolds numbers are significantly high and vary between 10(5) and 10(6). The present study is targeted toward these high Reynolds numbers where traditional rib turbulator shapes and prescribed optimum geometrical parameters have been investigated experimentally. A steady-state liquid crystal thermography technique is employed for measurement of detailed heat transfer coefficient. Five different rib configurations, viz., 45 deg, V-shaped, inverse V-shaped, W-shaped, and M-shaped have been investigated for Reynolds numbers ranging from 150,000 to 400,000. The ribs were installed on two opposite walls of a straight duct with an aspect ratio of unity. For very high Reynolds numbers, the heat transfer enhancement levels for different rib shapes varied between 1.4 and 1.7 and the thermal hydraulic performance was found to be less than unity.
机译:高压级燃气轮机叶片具有蛇形通道,其中安装了罗纹湍流器,以增强从压缩机和热内壁的相对较冷的空气之间的热传递。最先前的研究已经限于90,000的雷诺数,并且已经进行了几项研究以确定用于在该雷诺数的这种范围内实现高水平的热传递的几何优化参数。然而,对于陆基发电燃气轮机,雷诺数在10(5)和10(6)之间显着高并且变化。本研究朝向这些高雷诺数的针对实验研究了传统的罗纹湍流器形状和规定的最佳几何参数。采用稳态液晶热成像技术来测量详细的传热系数。五种不同的肋骨配置,Viz,45°,V形,逆V形,W形和M形,用于雷诺数,范围为150,000至400,000。肋骨安装在直线管的两个相对壁上,其纵横比统一。对于非常高的雷诺数,不同肋形状的传热增强水平在1.4和1.7之间变化,发现热液压性能小于单位。

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