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首页> 外文期刊>International Journal of Thermal Sciences >An experimental investigation on instability of transpiration cooling with phase change
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An experimental investigation on instability of transpiration cooling with phase change

机译:相变蒸腾散热性稳定性的实验研究

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摘要

Transpiration cooling using liquid coolant has been proven to be one of the most potential thermal protection techniques for hypersonic vehicles. However, the drastic pressure variation during phase change of liquid coolant may result in unsteady cooling effects, and this complicated problem has not been studied in detail, up to now. This paper presents the experimental investigation and theoretical analysis on the unstable performances of transpiration cooling with phase change. The experiment is carried out at four mainstream temperatures and four coolant injection ratios in the electric heating wind tunnel at University of Science and Technology of China(USTC). The results indicate that under a certain mainstream temperature and a range of coolant injection ratios, the transpiration cooling will never reach steady state, but fluctuate periodically instead. Particularly, the regular cooled wall temperature fluctuation of the entire plate surface and synchronous drastic variation of coolant chamber pressure under the complex action of capillary force and severe phase change are first captured. For the instant, under the condition of T-∞=573 K and F=0.28%, the entire surface temperature fluctuates regularly with a period of 197s, and a pressure peak of 23750Pa occurs in the coolant chamber. Then the essential reason of the fluctuation phenomenon in transpiration cooling is lucubrated theoretically, and the characteristics and influence factors are quantitatively analyzed.
机译:已被证明使用液体冷却剂的蒸腾冷却是超音速车辆最潜在的热保护技术之一。然而,液体冷却剂的相变期间的剧烈压力变化可能导致不稳定的冷却效果,并且目前尚未详细研究这种复杂的问题。本文介绍了对相变性能不稳定性能的实验研究和理论分析。实验在中国科学技术大学电热风隧道中进行了四个主流温度和四种冷却剂注射比率(USTC)。结果表明,在某个主流温度和一系列冷却剂注射比率下,蒸发冷却将永远不会达到稳定状态,但定期波动。特别地,首先捕获毛细管力和严重相变的复杂作用下整个板表面的常规冷却壁温度和冷却剂室压的同步爆震变化。对于瞬间,在T-ζ= 573k和f = 0.28%的条件下,整个表面温度通常在197年代定期波动,并且在冷却剂室中发生23750pa的压力峰。然后理论上,在蒸发冷却中的波动现象的基本原因是升高的,并且定量分析特征和影响因素。

著录项

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  • 作者单位

    CAS Key Laboratory of Mechanical Behavior and Design of Materials Department of Thermal Science and Energy Engineering University of Science and Technology of China;

    CAS Key Laboratory of Mechanical Behavior and Design of Materials Department of Thermal Science and Energy Engineering University of Science and Technology of China;

    CAS Key Laboratory of Mechanical Behavior and Design of Materials Department of Thermal Science and Energy Engineering University of Science and Technology of China;

    Beijing Institute of Astronautical System Engineering;

    Beijing Institute of Astronautical System Engineering;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 热力工程、热机;
  • 关键词

    Transpiration cooling; Coolant phase change; Fluctuation phenomena; Experiment;

    机译:蒸腾冷却;冷却剂相变;波动现象;实验;

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