过冷射流对稳定膜沸腾向强传热过渡动力学的影响

IF 1.1 4区 物理与天体物理 Q4 PHYSICS, APPLIED
T. A. Gubanova, P. K. Kanin, V. V. Yagov, A. R. Zabirov, I. A. Molotova, M. M. Vinogradov
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引用次数: 0

摘要

冷却表面和液体冷却剂的性质对膜沸腾过程中的换热强度和过渡到强状态的温度有显著影响。因此,目前许多研究都是针对有涂层和无涂层的各种金属圆柱和球的非定常冷却。在膜沸腾过程中,有效的点扰动源(例如,浸没在水中的射流)对蒸汽膜的影响也是真正令人感兴趣的。本文介绍了不锈钢球在液体中被浸没在同一液体中的射流冷却的实验结果。研究的目的是通过实验测量从稳定的膜沸腾过渡到沸腾的强烈传热状态的表面温度。实验中使用了不同的冷却液体,包括水、乙醇、水-乙醇混合物和全氟己烷。结果表明,在含水液体中向强传热模式的转变明显早于高酒精含量液体。尽管有浸没射流的影响,但在全氟己烷的膜沸腾过程中没有出现剧烈的换热现象。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Impact of Subcooled Liquid Jet on the Dynamics of Transition from Steady Film Boiling to Intense Heat Transfer Regime

Impact of Subcooled Liquid Jet on the Dynamics of Transition from Steady Film Boiling to Intense Heat Transfer Regime

The properties of the cooled surface and of liquid coolant significantly affect the heat transfer intensity during film boiling and the temperature of transition to the intense regime. As a result, many current studies are devoted to unsteady cooling of vertical cylinders and balls made of various metals with and without coating. The impact of an effectively point source of perturbation (such as, for example, a submerged jet) on the vapor film during film boiling is also of genuine interest. This paper presents experimental results of cooling a stainless steel ball in a liquid when exposed to a submerged jet of the same liquid. The aim of the study is to experimentally measure the surface temperature during the transition from steady film boiling to the intense heat transfer regime of boiling. Different cooling liquids were used in the experiments including water, ethanol, water-ethanol mixtures, and perfluorohexane. It is shown that the transition to the intense mode of heat transfer occurs in aqueous liquids significantly earlier than in liquids with high alcohol content. Despite the influence of the submerged jet, there was no intense heat transfer regime during film boiling in perfluorohexane.

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来源期刊
Technical Physics
Technical Physics 物理-物理:应用
CiteScore
1.30
自引率
14.30%
发文量
139
审稿时长
3-6 weeks
期刊介绍: Technical Physics is a journal that contains practical information on all aspects of applied physics, especially instrumentation and measurement techniques. Particular emphasis is put on plasma physics and related fields such as studies of charged particles in electromagnetic fields, synchrotron radiation, electron and ion beams, gas lasers and discharges. Other journal topics are the properties of condensed matter, including semiconductors, superconductors, gases, liquids, and different materials.
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