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Heat Transfer and Flow on the Blade Tip of a Gas Turbine Equipped with a Mean-Camberline Strip

机译:配备有中弧线的燃气轮机叶片尖端的传热和流动

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摘要

Experimental and computational studies have been performed to investigate the detailed distribution of convective heat transfer coefficients on the first-stage blade tip surface for a geometry typical of large power generation turbines (greater than 100 MW) In a previous work the numerical heat transfer results for a sharp edge blade tip and a radiused blade tip were presented. More recently several other tip treatments have been considered for which the tip heat transfer has been measured and documented. This paper is concerned with the numerical prediction of the tip surface heat transfer for radiused blade tip equipped with mean-camberline strip (or "squealer" as it is often called). The heat transfer results are compared with the experimental results and discussed. The effectiveness of the mean-camberline strip in reducing the tip leakage and the tip heat transfer as compared to a radiused edge tip and sharp edge tip was studied. The calculations show that the sharp edge tip works best (among the cases considered) in reducing the tip leakage flow and the tip heat transfer.
机译:已经进行了实验和计算研究,以研究大型发电涡轮机(大于100 MW)典型几何形状的第一级叶片尖端表面上对流传热系数的详细分布。给出了锋利的刃尖和圆角的刃尖。最近,已经考虑了几种其他的尖端处理,已经对其尖端传热进行了测量和记录。本文涉及装备有平均弯度线(或通常称为“刮油器”)的圆弧形刀头的刀头表面传热的数值预测。将传热结果与实验结果进行比较并进行讨论。研究了平均弧形线带与倒圆角尖端和尖锐边缘尖端相比在减少尖端泄漏和尖端传热方面的有效性。计算表明,尖锐的尖端在减少尖端泄漏流和尖端传热方面效果最好(在所考虑的情况中)。

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  • 作者

    Ameri, A.A.;

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  • 年度 2001
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