首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Effects of Nozzle Geometry on the Fluid Dynamics of Thin Liquid Films Flowing down Vertical Strings in the Rayleigh-Plateau Regime
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Effects of Nozzle Geometry on the Fluid Dynamics of Thin Liquid Films Flowing down Vertical Strings in the Rayleigh-Plateau Regime

机译:喷嘴几何形状对瑞利高原制度流动垂直串流动的薄液膜流体动力学

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摘要

Thin-liquid films flowing down vertical strings undergo instability, creating wavy film profiles and traveling beads. Previous studies assumed that the liquid film thickness and velocity profiles within the healing length from a nozzle were specified by the Nusselt solution, independent of the nozzle geometry. As a result, the influence of the nozzle diameter on the flow characteristics, such as the liquid bead size, spacing, and traveling speed, was largely overlooked. We report an experimental and numerical simulation study on liquid-film flows in the Rayleigh Plateau regime while systematically varying the nozzle diameter from 0.5 to 3.2 mm at different mass flow rates (0.02, 0.04, 0.06, and 0.08 g/s). We find that the nozzle diameter does have a strong influence on the flow regime and the flow characteristics. We identify the thickness of a nearly flat portion of a liquid film that precedes the onset of instability, which we term the preinstability thickness, as a critical flow parameter that governs the size, spacing, and frequency of liquid beads that develop downstream. By defining the liquid film aspect ratio a in terms of the preinstability thickness, we capture a flow transition from the Rayleigh Plateau (RP) instability regime to the isolated droplet regime. Improved understanding of the flow regimes and characteristics assists in the systematic design and optimization of a wide variety of processes and devices, including fiber coating and direct contact heat and mass exchangers.
机译:薄液膜流下垂直琴弦经历不稳定,产生波浪薄膜曲线和行驶珠子。以前的研究假设从喷嘴中愈合长度内的液膜厚度和速度曲线由NUSERET溶液指定,与喷嘴几何形状无关。结果,喷嘴直径对流动特性的影响,例如液体珠粒尺寸,间隔和行驶速度,在很大程度上被忽略了。我们报告了瑞利高原制度中液膜流动的实验性和数值模拟研究,同时系统地改变0.5至3.2mm的不同质量流量(0.02,0.04,0.06和0.08g / s)。我们发现喷嘴直径对流动制度和流动特性产生了强烈影响。我们识别液体膜的几乎平坦部分的厚度,该液体膜在不稳定性的开始之前,我们将其术语术语术语术语术语,作为控制下游的液体珠粒的尺寸,间隔和频率的临界流动参数。通过在预紧力厚度方面定义液体膜纵横比A,我们捕获从瑞利平台(RP)不稳定性制度的流过渡到分离的液滴状态。改进了对流动制度和特性的理解,有助于系统的设计和优化各种过程和装置,包括纤维涂层和直接接触的热和质量交换剂。

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