使用双色激光诱导荧光在密闭空间中测量多个沸腾气泡周围的温度

IF 1.2 4区 工程技术 Q3 THERMODYNAMICS
M. Tange, K. Kuribayashi, A. Abdelghany
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引用次数: 4

摘要

沸腾传热是液体显热和蒸发潜热的结合。为了研究沸腾过程中的显热传递,液-气多相流中液体的测温必须发挥重要作用。虽然目前提出了几种测量沸腾现象温度的光学方法,但由于许多沸腾气泡对照明和观测的干扰,直接测量热流密度较高的沸腾温度场是一项挑战。本研究提出了一种新的测温方法,利用密闭空间,即两个透明板之间的夹层空间,利用双色激光诱导荧光测温法测量多个沸腾气泡周围的液体温度分布。有限的空间限制了流体的运动,使照亮和观察几乎整个感兴趣的区域成为可能。两种荧光染料的强度比在没有物理探针入侵的情况下表现出局部温度和时间温度。我们成功地观察了过热液体从传热表面的清除,以证明该方法的实用性。从实验数据中提取的几个位置的时间温度变化与沸腾气泡行为一致。我们还讨论了方法上的遗留问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Temperature measurement around multiple boiling bubbles in a confined space using two-color laser-induced fluorescence
Boiling heat transfer has a combination of sensible heat transfer of liquid and latent heat transfer due to vaporization. To examine the sensible heat transfer in boiling, thermometry of liquid in liquid-vapor multiphase flow must play a significant role. Although there are several optical methods proposed for the thermometry of boiling phenomena, it is challenging to directly measure the temperature field of boiling at relatively high heat flux due to many boiling bubbles' interruption of the illumination and observation. This study proposes a novel thermometry method using a confined space, a sandwiched space between two transparency plates, and two-color laser induced fluorescence thermometry to measure the liquid temperature distribution around multiple boiling bubbles. The confined space restricted the fluid motion to make it possible to illuminate and observe the almost whole area of interest. The intensity ratio of the two kinds of fluorescent dye exhibits the local and temporal temperature without any invasion of physical probes. We successfully observed the scavenging of superheated liquid from the heat transfer surface to demonstrate this method's utility. The temporal temperature changes at several positions extracted from experimental data with this method were consistent with the boiling bubble behavior. We also discussed remained issues on the method.
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来源期刊
CiteScore
2.30
自引率
8.30%
发文量
0
审稿时长
5 months
期刊介绍: JTST covers a variety of fields in thermal engineering including heat and mass transfer, thermodynamics, combustion, bio-heat transfer, micro- and macro-scale transport phenomena and practical thermal problems in industrial applications.
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