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Effect of mist concentration on the cooling effectiveness of a diffused hole mist cooling system

机译:雾浓度对扩散孔冷却系统冷却效能的影响

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摘要

Cooling the blades of gas turbines is essential for extending the life of the blades. Conventional gas turbines use air-film cooling. With the increase in turbine inlet temperatures, novel cooling methods are required. Recently mist cooling started to gain prominence for high-capacity gas turbines. Mist cooling involves adding water droplets in the form of a fine mist to the air in conventional film cooled systems. This paper numerically investigates the performance of mist cooling at various mist concentrations for two different hole configurations. The cooling effectiveness for a coolant injection hole with diffusion angle of 10 degrees and 15 degrees was analyzed with mist concentration varied from 1 to 7%. The results show that with a low mist concentration of 1%, the cooling effectiveness improved drastically for both configurations. A maximum of 69% improvement was observed for 7% mist concentration and 10 degrees diffused hole. Mist concentrations above 5% did not offer any significant improvements as with lower concentrations.
机译:冷却燃气轮机的刀片对于延长叶片的寿命是必不可少的。传统的燃气轮机使用空气膜冷却。随着涡轮机入口温度的增加,需要新的冷却方法。最近雾气冷却开始突出高容量燃气轮机。雾气冷却涉及以常规薄膜冷却系统中的细雾形式添加水滴。本文以两种不同孔配置的各种雾浓度的雾气冷却的性能进行了数值。用雾浓度分析具有10度和15度的扩散角的冷却剂注入孔的冷却效能,从1〜7%变化。结果表明,由于低雾浓度为1%,对于这两种配置,冷却效果急剧提高。 7%雾浓度和10度漫射孔的最大可改善最多69%。雾浓度超过5%的浓度与较低浓度的任何显着改善没有。

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