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首页> 外文期刊>Food and Bioproducts Processing. Transactions of the Institution of Chemical Engineers, Part C >Cleaning of viscous drops on a flat inclined surface using gravity-driven film flows
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Cleaning of viscous drops on a flat inclined surface using gravity-driven film flows

机译:使用重力驱动的薄膜流清洁平坦倾斜表面上的粘性液滴

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We investigate the fluid mechanics of cleaning viscous drops attached to a flat inclined surface using thin gravity-driven film flows. We focus on the case where the drop cannot be detached either partially or completely from the surface by the mechanical forces exerted by the cleaning fluid on the drop surface. Instead a convective mass transfer establishes across the drop-film interface and the fluid in the drop dissolves into the cleaning film flow, which then transports it away. The characteristic time scale of dissolution is much longer than the advection time scale in the film flow. Thus, the shape and size of the drop can be considered as quasi-steady. To assess the impact of the shape and size of the drop on the velocity of the cleaning fluid, we have developed a novel experimental technique based on particle image velocimetry. We show the velocity distribution at the film surface in the situations both where the film is flowing over a smooth surface, and where it is perturbed by a solid obstacle representing a very viscous drop. We find that at intermediate Reynolds numbers the acceleration of the starting film is overestimated by a plane model using the lubrication approximation. In the perturbed case, the streamwise velocity is strongly affected by the presence of the obstacle. The upstream propagation of the disturbance is limited, but the disturbance extends downstream for distances larger than 10 obstacle diameters. Laterally, we observe small disturbances in both the streamwise and lateral velocities, owing to stationary capillary waves. The flow also exhibits a complex three-dimensional converging pattern immediately below the obstacle. (C) 2014 The Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:我们研究使用重力驱动的薄膜流清洁附着在平坦倾斜表面上的粘性液滴的流体力学。我们着眼于液滴无法通过清洁液在液滴表面上施加的机械力从表面上部分或完全脱离的情况。取而代之的是,在滴膜界面上建立了对流传质,并且滴中的流体溶解到清洁膜流中,然后将其运走。溶解的特征时间尺度比膜流中的平流时间尺度长得多。因此,液滴的形状和大小可以认为是准稳定的。为了评估液滴形状和大小对清洗液速度的影响,我们开发了一种基于粒子图像测速技术的新型实验技术。我们显示了薄膜在光滑表面上流动以及被代表非常粘稠液滴的固体障碍物所扰动的情况下,薄膜表面的速度分布。我们发现,在中间雷诺数下,使用润滑近似法的平面模型高估了起始膜的加速度。在受到干扰的情况下,障碍物的存在会严重影响水流速度。干扰的上游传播受到限制,但是干扰向下游延伸的距离大于10个障碍物直径。在侧面,由于固定的毛细波,我们观察到了在流速和横向速度上的微小扰动。在障碍物正下方,流动还表现出复杂的三维收敛模式。 (C)2014化学工程师学会。由Elsevier B.V.发布。保留所有权利。

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