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Theoretical and experimental analysis of overall cooling effectiveness for afterburner double-wall heat shield

机译:加强双壁隔热罩整体冷却效能的理论与实验分析

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摘要

The porous heat shield installed in the afterburner can effectively prevent the afterburner cylinder from overheating. Impingement/effusion cooling is one composite cooling technique to effectively improve the overall cooling effectiveness of the heat shield. Designing effective and efficient double-wall configurations requires a detailed understanding of how geometry and operating conditions affect the way coolant cools the afterburner cylinder. In this study, conjugated heat transfer experiments were conducted using IR thermography for double-wall heat shields with three open areas of the impingement plate (σ = 0.5%, 0.7%, 0.8%). The momentum flux ratio was varied in the range 0.01≤ I≤ 0.50. The mainstream Reynolds number, based on the diameter of the film hole, was varied in the range 800≤ Re_g≤ 2000. The effects of geometrical and aerodynamic parameters on overall cooling effectiveness were experimentally and numerically investigated with the comprehensive effects of solid heat conduction and convection heat transfer. The experiments were modeled in a low-temperature state (T_g = 603 K, T_c = 298 K), which was based on the analogy theory and matching principle, as if the experiments were conducted under engine operating conditions. The modeling accuracy of experimental results was analyzed by the analogy theory. Results show that the difference in the overall cooling effectiveness between "laboratory" conditions (T_g/T_c = 2) and "engine" conditions [T_g/T_c = 4) is within 0.048. The overall cooling effectiveness is mainly affected by the open area through adiabatic cooling effectiveness and internal heat transfer, and that is mainly affected by the mainstream Reynolds number through external heat transfer. According to the area-averaged results in given experimental conditions, the maximum overall cooling effectiveness raise and drop coefficients after increasing open area and mainstream Reynolds number are 17.3% and 6%, respectively. Thus, the high open area and low mainstream Reynolds number are beneficial to improve the overall cooling effectiveness of the afterburner double-wall heat shield. Furthermore, the experimental measurements provide an important database for the evaluation of computational fluid dynamics simulations of the conjugate heat transfer effects occurring in the double-wall heat shield.
机译:安装在后燃器中的多孔隔热罩可以有效地防止后燃缸过热。冲击/流水冷却是一种复合冷却技术,有效提高隔热罩的整体冷却效果。设计有效和高效的双壁配置需要详细了解几何和操作条件如何影响冷却液冷却后燃缸的方式。在该研究中,使用IR热传递实验使用IR热传递实验,用于双壁热屏蔽,其中撞击板的三个开口区域(σ= 0.5%,0.7%,0.8%)。动量磁通比在0.01≤i≤0.50的范围内变化。基于薄膜孔的直径的主流雷诺数在800≤Re≤2000的范围内变化。几何和空气动力学参数对整体冷却效果的影响是通过实验和数值进行的,以固体导热和固体导热的综合影响对流传热。实验以低温状态(t_g = 603k,t_c = 298k)建模,其基于类比理论和匹配原理,仿佛在发动机操作条件下进行了实验。通过类比理论分析了实验结果的建模准确性。结果表明,“实验室”条件(T_G / T_C = 2)和“发动机”条件[T_G / T_C = 4)之间的整体冷却效能之间的差异在0.048中。整体冷却效果主要受开放面积通过绝热冷却效果和内部传热影响,并且主要受到外部传热的主流雷诺数的影响。根据给定实验条件的面积平均结果,在增加开放区域和主流雷诺数之后的最大总冷却效果升高和下降系数分别为17.3%和6%。因此,高开口区域和低主流雷诺数有利于提高后燃器双壁热屏蔽的整体冷却效果。此外,实验测量提供了一种重要数据库,用于评估在双壁隔热罩中发生的共轭传热效果的计算流体动力学模拟。

著录项

  • 来源
    《International Journal of Heat and Mass Transfer》 |2021年第9期|121360.1-121360.18|共18页
  • 作者单位

    School of Power and Energy Northwestern Polytechnical University Shaanxi Xi'an 710072 China Shaanxi Key Laboratory of Thermal Sciences in Aero-engine System Xi'an 710072 China;

    School of Power and Energy Northwestern Polytechnical University Shaanxi Xi'an 710072 China Shaanxi Key Laboratory of Thermal Sciences in Aero-engine System Xi'an 710072 China;

    School of Power and Energy Northwestern Polytechnical University Shaanxi Xi'an 710072 China Shaanxi Key Laboratory of Thermal Sciences in Aero-engine System Xi'an 710072 China;

    AECC Sichuan Gas Turbine Establishment. Chengdu 610500 China;

    AECC Sichuan Gas Turbine Establishment. Chengdu 610500 China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Afterburner heat shield; Impingement/effusion cooling; Analogy theory; Open area; Mainstream Reynolds number; Overall cooling effectiveness;

    机译:加力燃烧室隔热;冲击/积液冷却;类比理论;公开场合;主流雷诺数;整体冷却效果;

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