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Simultaneous Measurements of Droplet Size and Transient Temperature Within Surface Water Droplets

机译:同时测量地表水滴内的水滴尺寸和瞬态温度

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摘要

A lifetime-based molecular tagging thermometry technique was developed for achieving simultaneous measurements of droplet size and transient temperature distribution within a small water droplet over a solid surface. For molecular tagging thermometry measurements, a pulsed laser is used to tag phosphorescent 1-BrNp • Mβ-CD · ROH molecules premixed within a small water droplet. Long-lived laser-induced phosphorescence is imaged at two successive times after the same laser excitation pulse. While the size of the water droplet (in terms of volume, height, contact area, and contact angle of the water droplet) can be determined instantaneously from the acquired phosphorescence images, the transient temperature measurement is achieved by taking advantage of the temperature dependence of phosphorescence lifetime, which is estimated from the intensity ratio of the acquired phosphorescence image pair. The feasibility and implementation of the lifetime-based molecular tagging thermometry technique were demonstrated by conducting simultaneous measurements of droplet size and spatially and temporally resolved temperature distribution inside a convectively-cooled microsized water droplet over an aluminum test plate to quantify the unsteady mass and heat transfer processes within the small water droplet to elucidate underlying physics to improve our understanding about microphysical phenomena associated with aircraft icing studies.
机译:开发了基于寿命的分子标记测温技术,以实现同时测量固体表面上小水滴内的液滴尺寸和瞬态温度分布。对于分子标记测温法测量,使用脉冲激光标记在小水滴中预混的磷光1-BrNp•Mβ-CD•ROH分子。长寿命激光诱导的磷光在相同的激光激发脉冲后连续两次成像。虽然可以从获取的磷光图像中即时确定水滴的大小(就水滴的体积,高度,接触面积和接触角而言),但通过利用温度依赖性可以实现瞬时温度测量磷光寿命,根据所获取的磷光图像对的强度比估算。通过对铝试板上对流冷却的微尺寸水滴内的液滴尺寸和时空分辨的温度分布进行同时测量,以量化不稳定质量和传热,证明了基于寿命的分子标记测温技术的可行性和实施。小水滴内的过程,以阐明基本物理原理,以增进我们对与飞机结冰研究相关的微观现象的理解。

著录项

  • 来源
    《AIAA Journal》 |2009年第4期|813-820|共8页
  • 作者

    Hui Hu; De Huang;

  • 作者单位

    Iowa State University, Ames, Iowa 50011 Department of Aerospace Engineering;

    Iowa State University, Ames, Iowa 50011 Department of Aerospace Engineering;

  • 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

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