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Film cooling performance and flow characteristics of internal cooling channels with continuous/truncated ribs

机译:具有连续/截断肋的内部冷却通道的薄膜冷却性能和流动特性

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摘要

To better evaluate the application of ribs in gas turbine blade cooling, this numerical study reports on the effects of ribs mounted on the internal cooling channel wall on external adiabatic film cooling performance. The numerical model is validated against available experimental data. For fixed mainstream and cooling flow Reynolds numbers, three ribs including the continuous rib, centrally truncated rib and laterally truncated rib at two blowing ratios (i.e., 0.5 and 1.0) are considered. At lower blowing ratio, results show that the cases with three distinct ribs provide approximately identical cooling effectiveness but significantly outperform the case without ribs. The superiority regarding laterally averaged adiabatic cooling effectiveness is 17-157%. However, at higher blowing ratio, the cases with ribs are inferior to the case without ribs, showing an inferiority of 21-68%. Further, at higher blowing ratio, the case with continuous ribs exhibits a 12-45% higher localized cooling effectiveness relative to other ribbed cases. It is found that cooling effectiveness deteriorates with the increase of spiral intensity of the coolant flow inside the film hole. Lower spiral intensity leads to a better covering of target wall by the coolant and thus results in better cooling effectiveness. The distinct relative merits among the cases at different blowing ratios are explored based on the aforementioned dominant mechanism.
机译:为了更好地评估肋在燃气轮机叶片冷却中的应用,此数值研究报告了安装在内部冷却通道壁上的肋对外部绝热膜冷却性能的影响。数值模型针对可用的实验数据进行了验证。对于固定的主流和冷却流雷诺数,考虑了三个肋,包括以两个吹气比(即0.5和1.0)的连续肋,中心截断肋和横向截断肋。在较低的鼓风比下,结果表明具有三个不同肋的外壳提供了大致相同的冷却效果,但明显优于没有肋的外壳。关于横向平均绝热冷却效率的优势为17-157%。然而,在较高的吹风比下,具有肋的情况要比没有肋的情况差,表现出21-68%的差。此外,在较高的吹风比下,具有连续肋的壳体相对于其他肋的壳体表现出高12-45%的局部冷却效率。已经发现,随着膜孔内部的冷却剂流的螺旋强度的增加,冷却效果变差。较低的螺旋强度导致冷却剂更好地覆盖目标壁,从而导致更好的冷却效果。基于上述主导机制,探讨了不同吹气比情况下各例之间的相对优点。

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