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Imaging of Surface-Tension- Driven Convection Using Liquid Crystal Thermography

机译:使用液晶热成像成像的表面张力驱动对流

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摘要

Surface-tension forces can drive fluid motion within thin liquid layers with a free surface. Spatial variations in the temperature of the free surface create surface tractions that drive cellular motions. The cells are most commonly hexagonal in shape and they scale on the thickness of the fluid layer. This investigation documents the formation of cells in the liquid film in the presence of a uniform-heat-flux lower boundary condition. Liquid crystal thermography was used to image the cells and measure the temperature distribu-tion on the lower surface of the liquid layer. A 1.1 mm deep pool of silicone oil was supported on a 50 μm thick electrically heated metal foil. The oil was retained inside an independently heated acrylic ring mounted on the top surface of the foil and a dry-ice cooling plate served as the low-temperature sink above the free surface of the oil. Color images of hexagonal convection cells were captured using liquid crystal thermography and a digital image acquisition and processing system. The temperature distribution inside a typical cell was measured using thermographic image analysis. Experimental issues, such as the use of an independently heated retaining ring to control the height of the liquid film and the utility of a flux-based Marangoni number are discussed.
机译:表面张力可以驱动具有自由表面的薄液体层内的流体运动。自由表面温度的空间变化会产生驱动细胞运动的表面牵引力。单元最通常为六边形,它们根据流体层的厚度缩放。该研究证明在均匀的热通量下边界条件存在下在液膜中形成细胞。用液晶热成像法对细胞成像并测量液层下表面的温度分布。将1.1毫米深的硅油池支撑在50μm厚的电加热金属箔上。将油保留在安装在箔片顶面上的独立加热的丙烯酸环内,干冰冷却板用作油自由表面上方的低温阱。使用液晶热成像仪和数字图像采集与处理系统捕获六边形对流单元的彩色图像。使用热成像图像分析来测量典型电池内部的温度分布。讨论了实验问题,例如使用独立加热的固定环来控制液膜的高度以及使用基于通量的Marangoni数。

著录项

  • 来源
    《Journal of Heat Transfer》 |2010年第12期|p.121601.1-121601.6|共6页
  • 作者单位

    Department of Mechanical Engineering, University of Houston, Engineering Building One, Houston, TX 77204,Associated Equipment Company, Pearland, TX;

    rnDepartment of Mechanical Engineering, University of Houston, Engineering Building One, Houston, TX 77204,NASA JohnsON Space Center, Houston, TX;

    rnDepartment of Mechanical Engineering, University of Houston, Engineering Building One, Houston, TX 77204;

  • 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

    marangoni flow; surface-tension-driven flow; liquid crystal thermography;

    机译:马兰戈尼流表面张力驱动的流动;液晶热成像;
  • 入库时间 2022-08-18 00:26:04

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