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首页> 外文期刊>Journal of turbomachinery >On the Heat Transfer and Flow Structures' Characteristics of the Turbine Blade Tip Underside With Dirt Purge Holes at Different Locations by Using Topological Analysis
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On the Heat Transfer and Flow Structures' Characteristics of the Turbine Blade Tip Underside With Dirt Purge Holes at Different Locations by Using Topological Analysis

机译:通过使用拓扑分析,在不同位置污垢吹扫孔的传热和流动结构对不同位置的污垢吹扫孔的特性

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摘要

This paper numerically investigated the impact of the holes and their location on the flow and tip internal heat transfer in a U-bend channel (aspect ratio=1:2), which is applicable to the cooling passage with dirt purge holes in the mid-chord region of a typical gas turbine blade. Six different tip ejection configurations are calculated at Reynolds numbers from 25,000 to 200,000. The detailed three-dimensional flow and heat transfer over the tip wall are presented, and the overall thermal performances are evaluated. The topological methodology, which is first applied to the flow analysis in an internal cooling passage of the blade, is used to explore the mechanisms of heat transfer enhancement on the tip wall. This study concludes that the production of the counter-rotating vortex pair in the bend region provides a strong shear force and then increases the local heat transfer. The side-mounted single hole and center-mounted double holes can further enhance tip heat transfer, which is attributed to the enhanced shear effect and disturbed low-energy fluid. The overall thermal performance of the optimum hole location is a factor of 1.13 higher than that of the smooth tip. However, if double holes are placed on the upstream of a tip wall, the tip surface cannot be well protected. The results of this study are useful for understanding the mechanism of heat transfer enhancement in a realistic gas turbine blade and for efficient designing of blade tips for engine service.
机译:数量地研究了孔的冲击和它们在U形弯道(纵横比= 1:2)中的流动和尖端内部传热的影响,这适用于中间的污垢吹扫孔的冷却通道典型的燃气轮机叶片的弦区。六种不同的尖端喷射配置在雷诺数/ 200,000的雷诺数计算。提出了尖端壁的详细三维流和传热,并评估总热性能。首先应用于叶片内部冷却通道中的流动分析的拓扑方法,用于探讨尖端壁的热传递增强机制。该研究得出结论:在弯曲区域中的反向旋转涡流对的产生提供强剪切力,然后增加局部传热。侧安装的单孔和中心安装的双孔可以进一步增强尖端传热,其归因于增强的剪切效果和干扰的低能量流体。最佳孔位置的总热性能比平滑尖端高1.13。但是,如果将双孔放置在尖端壁的上游,则尖端表面不能良好保护。该研究的结果可用于理解现实燃气轮机叶片中的传热增强机制,用于有效地设计发动机服务的刀片提示。

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  • 来源
    《Journal of turbomachinery》 |2019年第7期|071004.1-071004.18|共18页
  • 作者单位

    Harbin Inst Technol Sch Energy Sci & Engn Harbin 150001 Heilongjiang Peoples R China;

    Harbin Inst Technol Sch Energy Sci & Engn Harbin 150001 Heilongjiang Peoples R China;

    Harbin Inst Technol Sch Energy Sci & Engn Harbin 150001 Heilongjiang Peoples R China;

    Harbin Inst Technol Sch Energy Sci & Engn Harbin 150001 Heilongjiang Peoples R China;

    Harbin Inst Technol Sch Energy Sci & Engn Harbin 150001 Heilongjiang Peoples R China;

    Harbin Inst Technol Sch Energy Sci & Engn Harbin 150001 Heilongjiang Peoples R China;

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  • 正文语种 eng
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