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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Experimental and numerical study of an integrated air- and steam-cooled gas turbine vane
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Experimental and numerical study of an integrated air- and steam-cooled gas turbine vane

机译:气冷和气冷一体化燃气轮机叶片的实验和数值研究

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摘要

This paper proposes a new cooling method which integrates steam and air for gas turbine vane cooling with the aim to solve the problem of a very high thermal load at the trailing edge region of a steam-cooled gas turbine vane. The influence of coolant inlet conditions on the temperature and cooling effectiveness distribution of the experimental vane surface has been investigated in a hot wind tunnel test facility with a three-vane cascade. The test vane external aerodynamic and heat transfer were investigated experimentally and numerically. Two improved arrangement of cooling working fluid flow direction were designed to reduce the temperature gradient along the vane height. The following conclusions can be made: the thermal load at the trailing edge region is reduced for this integrated air and steam cooled gas turbine vane; the surface temperature uniformity is improved. Under an optimal thermal physical parameters of the cooling fluids, the cooling effectiveness of the trailing edge region and the leading edge region are 50% and 55%, respectively; the cooling effectiveness of the mid chord region is the highest and reaches 67%; The cooling method and structure have more influence on the cooling effectiveness compared with the cooling fluids inlet conditions.
机译:本文提出了一种新的冷却方法,该方法将蒸汽和空气结合在一起以用于燃气轮机叶片冷却,以解决在蒸汽冷却的燃气轮机叶片的后缘区域具有非常高的热负荷的问题。已经在具有三叶片级联的热风隧道测试设备中研究了冷却剂入口条件对实验叶片表面的温度和冷却效率分布的影响。试验叶片的外部空气动力学和热传递进行了实验和数值研究。设计了两种改进的冷却工作流体流向布置,以减小沿叶片高度的温度梯度。可以得出以下结论:对于这种集成的空气和蒸汽冷却的燃气轮机叶片,后缘区域的热负荷降低了;表面温度均匀性提高。在冷却流体的最佳热物理参数下,后缘区域和前缘区域的冷却效率分别为50%和55%;中弦区域的冷却效率最高,达到67%。与冷却液的入口条件相比,冷却方法和结构对冷却效率的影响更大。

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