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首页> 外文期刊>Journal of Thermal Science and Engineering Applications: Transactions of the ASME >Numerical Investigation of Film Cooling Enhancement Using Staggered Row Mixed Hole Arrangements
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Numerical Investigation of Film Cooling Enhancement Using Staggered Row Mixed Hole Arrangements

机译:基于交错行混合孔布置的薄膜冷却增强数值研究

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摘要

The paper presents a novel study on film cooling effectiveness of a 3D flat plate with a multihole arrangement of mixed hole shapes. The film cooling arrangement consists of two rows of coolant holes, organized in a staggered pattern with an LID (length to diameter ratio) of 10. The two rows consist of varied combinations of triangular and semi-elliptic shaped holes for the enhancement of film-cooling effectiveness. The results were obtained for a coolant to mainstream temperature ratio of 0.5 and a blowing ratio of 1.0. The computed flow temperature fields are presented in addition to the local two-dimensional streamwise and spanwise distribution of film cooling effectiveness. Validation of the results obtained from the turbulence model has been done with the experimental data of centerline film cooling effectiveness downstream of the cooling holes available in the open literature. The results showed the rapid merging of coolant jets emerging from front row of multiholes with the secondary staggered row of mixed holes. Due to the mainstream-coolant jet interaction, the strength of the counter rotating vortex pair was mitigated in the downstream region for certain arrangement of mixed hole shapes. The optimal hole combination with maximum overall effectiveness has been deduced from this study. The best configuration (M.R. VI) not only favored for the developed film, but also enhanced the averaged film cooling effectiveness to a large extent.
机译:本文对混合孔形状的多孔排列的三维平板的薄膜冷却效果进行了新的研究。薄膜冷却装置由两排冷却液孔组成,以交错模式组织,LID(长径比)为 10。两排由三角形和半椭圆形孔的不同组合组成,以提高薄膜冷却效果。结果显示,冷却液与主流温度之比为0.5,吹气比为1.0。除了薄膜冷却效果的局部二维流向和跨度分布外,还给出了计算出的流温场。从湍流模型中获得的结果已经使用开放文献中可用的冷却孔下游的中心线膜冷却效果的实验数据进行了验证。结果表明,从前排多孔中出现的冷却剂射流与次排交错的混合孔快速合并。由于主流-冷却剂射流相互作用,对于某些混合孔形状的排列,下游区域的反向旋转涡流对的强度被降低。从这项研究中推导出了具有最大整体效率的最佳孔组合。最佳配置(M.R. VI)不仅有利于显影膜,而且在很大程度上提高了平均膜冷却效果。

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