论文标题

通过积分模型的喷气擦拭过程的动力学

Dynamics of the Jet Wiping Process via Integral Models

论文作者

Mendez, M. A., Gosset, A., Scheid, B., Balabane, M., Buchlin, J. -M.

论文摘要

喷射擦拭工艺是一种具有成本效益的涂料技术,它使用撞击气流的液体沿移动带拖动的液体厚度。在各种涂料行业(主要是热浸镀锌)中,此过程至关重要,其特征是气射流与液体膜之间的不稳定相互作用,导致波浪状的最终涂层膜。为了了解波浪形成的动力学,我们将掉落膜的经典层流边界层模型扩展到喷射擦拭问题,包括自相似的积分边界层(IBL)和加权积分边界层(WIBL)模型。此外,我们提出了一个过渡和湍流模型(TTBL),以探索对较大雷诺数字的建模扩展,并分析建模策略对液体膜动力学的影响。首先使用液体(VOF)模拟的量,由液体膜掉落在向上移动的壁上,首先在更简单的问题上分析了长波公式的有效性。该验证证明了整体配方在其有效性理论限制之外的条件下的鲁棒性。最后,使用三个模型来研究液体涂层对撞击射流中谐波和非谐波振荡和脉动的响应。分析了这些干扰对平均涂料厚度和波浪振幅的影响,并显示了最大干扰放大的无量纲频率的范围。

The jet wiping process is a cost-effective coating technique that uses impinging gas jets to control the thickness of a liquid layer dragged along a moving strip. This process is fundamental in various coating industries (mainly in hot-dip galvanizing) and is characterized by an unstable interaction between the gas jet and the liquid film that results in wavy final coating films. To understand the dynamics of the wave formation, we extend classic laminar boundary layer models for falling films to the jet wiping problem, including the self-similar integral boundary layer (IBL) and the weighted integral boundary layer (WIBL) models. Moreover, we propose a transition and turbulence model (TTBL) to explore modelling extensions to larger Reynolds numbers and to analyze the impact of the modelling strategy on the liquid film dynamics. The validity of the long-wave formulation was first analyzed on a simpler problem, consisting of a liquid film falling over an upward-moving wall, using Volume Of Fluid (VOF) simulations. This validation proved the robustness of the integral formulation in conditions that are well outside their theoretical limits of validity. Finally, the three models were used to study the response of the liquid coat to harmonic and non-harmonic oscillations and pulsations in the impinging jet. The impact of these disturbances on the average coating thickness and wave amplitude is analyzed, and the range of dimensionless frequencies yielding maximum disturbance amplification is presented.

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