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首页> 外文期刊>Journal of propulsion and power >Characteristics of Thermal Cavitation on a Two-Dimensional Hydrofoil
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Characteristics of Thermal Cavitation on a Two-Dimensional Hydrofoil

机译:二维水翼上的空化特性

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摘要

Cavitation in cryogenic rocket propellants was simulated using a surrogate fluid exhibiting thermodynamic properties similar to liquid hydrogen. A NACA 0015 hydrofoil was chosen to represent the leading edge of a turbopump inducer, and it was installed in a closed-loop facility filled with a fluid that exhibits a strong thermodynamic effect at ambient conditions. Static pressures were measured at seven locations along the hydrofoil chord and along the wall of the test section. Flow at Reynolds numbers up to 2 × 10~6 and temperature high enough to produce ΔT~* above unity exploited the thermosensitive properties of the surrogate fluid. Sensitivity to isolated effects of velocity, cavitation number, temperature, and angle of attack were studied, and behavior of the cavity growth and collapse cycle is described. Cavitation was observed at local static pressure both above and below the vapor point corresponding to the inlet temperature. Pressure and frequency analysis of these phenomena is described.
机译:使用表现出类似于液氢的热力学性质的替代流体来模拟低温火箭推进剂中的空化。选择NACA 0015水翼片代表涡轮泵诱导器的前缘,并将其安装在装有流体的闭环设备中,该流体在环境条件下表现出强烈的热力学作用。在沿水翼弦和测试段壁的七个位置测量静压。雷诺数高达2×10〜6且温度高到足以产生ΔT〜*大于1的温度,这利用了替代流体的热敏特性。研究了对速度,空化数,温度和迎角的孤立效应的敏感性,并描述了空腔生长和坍塌周期的行为。在对应于入口温度的蒸气点之上和之下的局部静压力下观察到气蚀现象。描述了对这些现象的压力和频率分析。

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  • 来源
    《Journal of propulsion and power》 |2013年第2期|410-416|共7页
  • 作者

    Sean Kelly; Corin Segal;

  • 作者单位

    University of Florida, Gainesville, Florida 32611 Department of Mechanical and Aerospace Engineering. MAE-A 231, P.O. Box 116250;

    University of Florida, Gainesville, Florida 32611 Department of Mechanical and Aerospace Engineering. MAE-A 231, P.O. Box 116250;

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  • 正文语种 eng
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