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Formation Mechanism and] Characteristics of a Liquid Microlayer in MicroChannel] Boiling System

机译:微通道沸腾系统中液体微层的形成机理和特性

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摘要

Experiments were performed using the laser extinction method to measure the thickness of the liquid film formed by growing flattened bubbles in a microchannel for gap sizes of 0.5 mm, 0.3 mm, and 0.15 mm. Water, ethanol, and toluene were used as test fluids. A high-speed camera was also used to simultaneously measure the bubble growth process. It was confirmed that the gap size and bubble forefront velocity determined the initial microlayer thickness. The variation trend of the microlayer thickness relative to the velocity of the interface was divided into two regions: region I, where the velocity is small and the thickness increases linearly with increasing velocity, and region II, where the thickness is almost constant or decreased slightly with increasing velocity. Furthermore, a nondimensional correlation for investigating the effects of test materials and gap sizes on microlayer thickness is presented. An analysis of the results showed that the boundaries of the two regions correspond to a Weber number of approximately 110, and in the region where the Weber number was smaller than 110, the thickness of the microlayer was thinner for the liquid whose value of p~(0.62)v~(0.42)σ~(0.62) was relatively small. However, for the region where Weber number was larger than 110, the smaller the kinematic viscosity of the liquid, the thinner the microlayer became.
机译:使用激光消光法进行实验以测量通过在0.5mm,0.3mm和0.15mm的间隙尺寸的微通道中生长扁平气泡而形成的液膜的厚度。水,乙醇和甲苯用作测试液。还使用高速相机同时测量气泡的生长过程。证实间隙尺寸和气泡最前沿速度决定了初始微层厚度。将微层厚度相对于界面速度的变化趋势分为两个区域:区域I(速度小且厚度随速度增加而线性增加)和区域II(厚度几乎恒定或略有减小)随着速度的增加。此外,提出了用于研究测试材料和间隙尺寸对微层厚度影响的无量纲相关性。对结果的分析表明,两个区域的边界对应于约110的韦伯数,在韦伯数小于110的区域中,微层的厚度对于p值为p〜的液体更薄。 (0.62)v〜(0.42)σ〜(0.62)相对较小。然而,对于韦伯数大于110的区域,液体的运动粘度越小,微层变得越薄。

著录项

  • 来源
    《Journal of Heat Transfer》 |2010年第12期|p.122403.1-122403.7|共7页
  • 作者单位

    Graduate School of Engineering,Yokohama NatiONal University, Tokiwadai, Hodogaya, Yokohama 240-8501, Japan;

    rnFaculty of Engineering, Yokohama NatiONal University, Tokiwadai, Hodogaya, Yokohama 240-8501,Japan;

    rnTokyo Electric Power Company, b2-1377 Soga-cho, Chuo-ku 260-0822Chiba, Japan;

  • 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

    microlayer; microchannel; phase change; laser extinction method;

    机译:微层微通道相变激光消光法;
  • 入库时间 2022-08-18 00:26:05

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