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首页> 外文期刊>International Journal of Thermophysics >Thermal Response of a Two-Phase Near-Critical Fluid in Low Gravity: Strong Gas Overheating as Due to a Particular Phase Distribution
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Thermal Response of a Two-Phase Near-Critical Fluid in Low Gravity: Strong Gas Overheating as Due to a Particular Phase Distribution

机译:低重力状态下两相近临界流体的热响应:由于特定的相分布,气体强烈过热

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摘要

An experimental study of the thermal response to a stepwise rise of the wall temperature of two-phase near-critical SF6 in low gravity for an initial temperature ranging from 0.1 to 10.1 K from the critical temperature is described. The change in the vapor temperature with time considerably exceeds the change in the wall temperature (overheating by up to 23% of the wall temperature rise). This strong vapor overheating phenomenon results from the inhomogeneous adiabatic heating process occurring in the two-phase near-critical fluid while the vapor bubble is thermally isolated from the thermostated walls by the liquid. One-dimensional numerical simulations of heat transfer in near-critical two-phase 3He confirm this explanation. The influence of heat and mass transfer between gas and liquid occurring at short time scales on the thermal behavior is analyzed. A model for adiabatic heat transfer, which neglects phase change but accounts for the difference between the thermophysical properties of the vapor and those of the liquid, is presented. A new characteristic time scale of adiabatic heat transfer is derived, which is found to be larger than that in a one-phase liquid and vapor.
机译:描述了在初始温度从临界温度0.1到10.1 K的情况下,在低重力下两相近临界SF6 壁温逐步升高的热响应的实验研究。蒸汽温度随时间的变化大大超过了壁温的变化(过热最多达到壁温上升的23%)。这种强烈的蒸汽过热现象是由两相近临界流体中发生的不均匀绝热加热过程引起的,同时蒸汽气泡被液体与恒温壁热隔离。近临界两相3传热的一维数值模拟证实了这一解释。分析了在短时间内发生的气体和液体之间的传热和传质对热行为的影响。提出了一种绝热传热的模型,该模型忽略了相变,但考虑到了蒸汽和液体的热物理性质之间的差异。得出了绝热传热的新的特征时间尺度,发现该尺度大于一相液体和蒸气中的绝热时间尺度。

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  • 来源
    《International Journal of Thermophysics》 |2002年第1期|103-115|共13页
  • 作者单位

    Equipe du Supercritique pour l'Environnement les Matériaux et l'Espace Institut de Chimie de la Matière Condensée de Bordeaux UPR CNRS 9048 Université Bordeaux I;

    Equipe du Supercritique pour l'Environnement les Matériaux et l'Espace Institut de Chimie de la Matière Condensée de Bordeaux UPR CNRS 9048 Université Bordeaux I;

    Equipe du Supercritique pour l'Environnement les Matériaux et l'Espace Institut de Chimie de la Matière Condensée de Bordeaux UPR CNRS 9048 Université Bordeaux I;

    Equipe du Supercritique pour l'Environnement les Matériaux et l'Espace Service des Basses Températures Commissariat à l'Energie Atomique;

    Department of Physics University of New Orleans;

    Jet Propulsion Laboratory California Institute of Technology;

    Jet Propulsion Laboratory California Institute of Technology;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    adiabatic compression; low gravity; near-critical fluid; two-phase heat and mass transfer;

    机译:绝热压缩;低重力;近临界流体;两相传热传质;

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