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Application of a ratiometric laser induced fluorescence (LIF) thermometry for micro-scale temperature measurement for natural convection flows

机译:比例激光诱导荧光(LIF)测温技术在自然对流流动的微型温度测量中的应用

摘要

A ratiometric laser induced fluorescence (LIF) thermometry applied to micro-scale temperature measurement for natural convection flows. To eliminate incident light non-uniformity and imperfection of recording device, two fluorescence dyes are used: one is temperature sensitive fluorescence dye (Rhodamine B) and another is relatively temperature insensitive fluorescence dye (Rhodamine 110). Accurate and elaborate calibration for intensity ratio verses temperature obtained using an isothermal cuvette, which was controlled by two thermo-bathes. 488nm Ar-ion laser used for incident light and two filter sets used for separating each fluorescence emission. Thermally stratified filed of 10mm channel with micro-scale resolution measured within 1.3?C uncertainty of liner prediction with 23?m x 23?m spatial resolution. Natural convection flows at 10mm channel also observed. The several difficulties for applying to heated evaporating meniscus were identified and a few resolutions were suggested.
机译:比例激光诱导荧光(LIF)测温法应用于自然对流流动的微型温度测量。为了消除入射光的不均匀性和记录设备的缺陷,使用了两种荧光染料:一种是对温度敏感的荧光染料(若丹明B),另一种是对温度不敏感的荧光染料(若丹明110)。使用等温比色杯对强度比与温度进行精确而精确的校准,该比色皿由两个恒温仪控制。 488nm的Ar离子激光器用于入射光,两个滤光片组用于分离每个荧光发射。 10毫米通道的热分层场,在23?m x 23?m空间分辨率的衬管预测不确定性1.3?C内测得的微尺度分辨率。还观察到在10mm通道的自然对流。确定了应用于加热蒸发弯液面的几个困难,并提出了一些解决方案。

著录项

  • 作者

    Lee Heon Ju;

  • 作者单位
  • 年度 2004
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
  • 中图分类
  • 入库时间 2022-08-20 19:41:53

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