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首页> 外文期刊>International Journal of Heat and Mass Transfer >Variation of the liquid film thickness distribution between contacting twin air bubbles during the coalescence process in water and ethanol pools
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Variation of the liquid film thickness distribution between contacting twin air bubbles during the coalescence process in water and ethanol pools

机译:水和乙醇池合并过程中接触的两个气泡之间的液膜厚度分布变化

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摘要

This study aims to investigate the characteristics of coalescence phenomena by precise measurement of the liquid film thickness distribution between approaching bubbles. This study targeted the coalescence of bubbles in pure water and ethanol pools to reveal the rupture characteristics of the liquid film formed between the approaching bubbles, which has a direct correspondence to the occurrence of coalescence phenomena. In this study, new and more precise measurements were performed for water and ethanol, whose physical properties are greatly different from one another. The basic experimental system, in which the approach velocity was easily controlled, was chosen to realize precise measurement of liquid film behaviors. That is, the coalescence of horizontally contacting twin bubbles was experimentally investigated using isothermal air-water and air-ethanol systems. The liquid film thickness formed between the contacting bubbles was measured using an improved laser extinction method. The variation of liquid film thickness between the bubbles at the rupture location and the distribution of the liquid film thickness were evaluated. The experimental parameters were the airflow rate and the measurement position for both water and ethanol. The bubble approach velocity and the contact duration, which is the time from the start of the bubbles' collision to the commencement of coalescence, were measured. When relatively quick bubble coalescence (short contact duration) occurs, the liquid film thickness is thinnest near the film center. The thinnest film thickness appeared just before coalescence and was approximately 1.0-2.5 μm and 0.3-1.0 μm for water and ethanol, respectively. An annular-shaped thinner area in the liquid film emerged and shifted from the center toward the periphery of the liquid film with the increase in the bubble approach velocity and short contact duration. The thinnest liquid film thickness just before the commencement of rupture in the ring-shaped areas was approximately 0.2-0.9 μm and 0.1-0.3 μm for water and ethanol, respectively. Trends of film thickness variation were qualitatively similar to each other for water and ethanol.
机译:本研究旨在通过精确测量接近气泡之间的液膜厚度分布来研究聚结现象的特征。这项研究针对纯水和乙醇池中气泡的聚结,以揭示在接近的气泡之间形成的液膜的破裂特性,这与聚结现象的发生直接相关。在这项研究中,对水和乙醇进行了新的更精确的测量,它们的物理性质彼此之间有很大的不同。选择基本的实验系统,在该系统中可以轻松控制接近速度,以实现液膜行为的精确测量。即,使用等温空气-水和空气-乙醇系统对水平接触的双气泡的聚结进行了实验研究。使用改进的激光消光法测量在接触气泡之间形成的液膜厚度。评价了破裂位置的气泡之间的液膜厚度的变化和液膜厚度的分布。实验参数是空气流速和水和乙醇的测量位置。测量了气泡接近速度和接触持续时间,即从气泡碰撞开始到聚结开始的时间。当发生相对快速的气泡聚结(短接触时间)时,液膜厚度在膜中心附近最薄。最薄的膜厚度恰好在聚结之前出现,对于水和乙醇,分别约为1.0-2.5μm和0.3-1.0μm。随着气泡接近速度的增加和短接触时间的增加,液膜中的环形较薄区域出现并从液膜的中心向周边移动。在环形区域中,刚开始破裂之前最薄的液膜厚度对于水和乙醇分别约为0.2-0.9μm和0.1-0.3μm。对于水和乙醇,膜厚度变化的趋势在质量上彼此相似。

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