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首页> 外文期刊>Acta astronautica >Boiling phenomena in near-critical SF_6 observed in weightlessness
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Boiling phenomena in near-critical SF_6 observed in weightlessness

机译:在失重状态下观察到近临界SF_6的沸腾现象

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摘要

Boiling phenomena in the two-phase region of SF_6 close to its critical point have been observed using the high-quality thermal and optical environment of the CNES dedicated facility ALI-DECLIC on board the International Space Station (ISS). The weightlessness environment of the fluid, which cancels buoyancy forces and favorites the three-dimensional spherical shape of the gas bubble, is proven to be an irreplaceable powerful tool for boiling studies. To identify each key mechanism of the boiling phenomena, the ALI-DECLIC experiments have benefited from (ⅰ) the well-adapted design of the test cells, (ⅱ) the high-fidelity of the ALI insert teleoperation when long-duration experiment in stable thermal and microgravity environment are required and (ⅲ) the high repeatability of the controlled thermal disturbances. These key mechanisms were observed by light transmission and interferometry technique independently with two sample cells filled with pure SF_6 at a near-critical density. The fluid samples are driven away from thermal equilibrium by using a heater directly implemented in the fluid, or a surface heater on a sapphire optical window. In the interferometry cell, the bulk massive heater distinguishes two symmetrical two-phase domains. The modification of the gas bubble shape is observed during heating. In the direct observation cell, the gas bubble is separated by a liquid film from the thin layered transparent heater deposited on the sapphire window. The liquid film drying and the triple contact line motion during heating are observed using light transmissioa The experiments have been performed in a temperature range of 10 K below the critical temperature T_c, with special attention to the range 0.1 mK≤T_c-T≤3 mK very close to the critical temperature. The unique advantage of this investigation is to provide opportunities to observe the boiling phenomena at very low heat fluxes, thanks to the fine adjustment of the liquid-vapor properties, (e.g. surface tension), by precise control of the distance to the critical point We present the new observations of the gas bubble spreading over the heating surface which characterizes the regime where vapor bubbles nucleate separately and grow, as well as liquid drying, vapor film formation, triple contact line motion, which are the key mechanisms at the origin of the boiling crisis when the formed vapor film reduces the heat transfer drastically at the heater wall.
机译:使用国际空间站(ISS)上CNES专用设施ALI-DECLIC的高质量热和光学环境,已经观察到SF_6接近临界点的两相区域中的沸腾现象。流体的失重环境消除了浮力并偏爱气泡的三维球形,被证明是进行沸腾研究不可替代的强大工具。为了确定沸腾现象的每个关键机制,ALI-DECLIC实验得益于(ⅰ)测试单元的自适应设计,(ⅱ)稳定状态下进行长时间实验时ALI插入遥操作的高保真度需要热和微重力环境,并且(ⅲ)受控制的热干扰具有很高的可重复性。这些关键机制是通过光透射和干涉技术分别用两个充满了接近临界密度的纯SF_6的样品池观察到的。通过使用直接在流体中实现的加热器或蓝宝石光学窗口上的表面加热器,使流体样本脱离热平衡。在干涉测量仪中,块状加热器区分两个对称的两相区域。在加热期间观察到气泡形状的改变。在直接观察池中,气泡通过液膜与沉积在蓝宝石窗口上的薄层透明加热器分开。使用透光率观察到液膜干燥和加热过程中的三重接触线运动。在临界温度T_c以下10 K的温度范围内进行了实验,特别注意范围为0.1mK≤T_c-T≤3mK非常接近临界温度。这项研究的独特优势在于,通过精确控制到临界点的距离We,可以很好地调节液体蒸汽特性(例如表面张力),从而在非常低的热通量下提供观察沸腾现象的机会。介绍了气泡在加热表面上扩散的新观察结果,该现象表征了气泡分别成核并生长的状态,以及液体干燥,蒸气膜形成,三重接触线运动,这是产生气泡的关键机制。当形成的蒸气膜大大降低加热器壁处的热传递时,会发生沸腾危机。

著录项

  • 来源
    《Acta astronautica》 |2014年第julaaauga期|22-29|共8页
  • 作者单位

    CNRS, ICMCB-ESEME, UPR 9048, Univ. Bordeaux, F-33600 Pessac, France,ICMCB-CNRS, 87 avenue du Dr Albert Schweitzer, 33608 Pessac Cedex, France;

    CNRS, ICMCB-ESEME, UPR 9048, Univ. Bordeaux, F-33600 Pessac, France;

    Service des Basses Temperatures, UMR-E CEA/UJF-Grenoble 1, INAC, Grenoble, France,ESEME, PMMH-ESPCI, 10 rue Vauquelin, 75231 Paris Cedex 5, France;

    Service des Basses Temperatures, UMR-E CEA/UJF-Grenoble 1, INAC, Grenoble, France,ESEME, PMMH-ESPCI, 10 rue Vauquelin, 75231 Paris Cedex 5, France;

    Jet Propulsion Laboratory, California Institute of Technology, CA 91109, USA;

  • 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

    Boiling phenomena; Boiling crisis; Critical heat flux; Liquid-gas critical point; Sulphur hexafluoride; Microgravity experiment;

    机译:沸腾现象;沸腾的危机;临界热通量;液化气临界点;六氟化硫;微重力实验;

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