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A new approach to simulate the fluid dynamics in a wiped film evaporator using Modelica

机译:一种新方法,用于使用ModelICA模拟擦拭膜蒸发器中的流体动力学

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摘要

Wiped film evaporators(WFE)or agitated thin film evaporators are efficient equipment for separating highly thermosensitive and viscous mixtures.There are different approaches to tailor residence time distribution(RTD)for specific applications and to maximise heat and mass transfer by equipment design or process parameter adjustment,like liquid load or wiper speed.However,the fundamental principles of fluid dynamics are only known to a limited extent.Although flow patterns and mass and heat transfer are highly interdependent,the effects of different wipers on liquid flow and,finally,on residence time behaviour are poorly understood.In this work,a new model describing fluid dynamics and its impact on RTD is presented.The model is implemented in the equation-based modelling language Modelica.Several system variables-e.g.film thickness,hold-up or velocity profiles within the liquid film-can be estimated.The effect of varying process parameters,like liquid load and fluid temperature,can also be evaluated.The model has been calibrated with results from RTD experiments in a WFE using a roller wiper.It is capable of describing the residence time behaviour of the roller wiper system with good accuracy.Mean residence times can be reproduced within approx.±20%.Further results,such as film thickness or hold-up,provide additional insight into the fluid dynamics of characteristic regions-like bow wave,wiping and thin film zone-and the effects of several process parameters.
机译:擦拭薄膜蒸发器(WFE)或搅拌的薄膜蒸发器是用于分离高热敏和粘性混合物的有效设备。定制居住时间分布(RTD)对特定应用的不同方法,并通过设备设计或工艺参数最大化热量和质量传递调整,如液体载荷或刮水速度。然而,使用流体动力学的基本原理仅在有限的范围内已知。虽然流动模式和质量和传热高度相互依赖,但不同刮水器对液体流动的影响,最后,居留时间行为理解得很差。在这项工作中,提出了一种描述流体动力学的新模型及其对RTD的影响。模型是在基于等式的建模语言ModelICACA中实现的.Sey系统变量 - EGFILM厚度,保持或液体膜内的速度曲线可以估计。改变工艺参数的效果,如液体载荷和流体温度,罐头o评估。使用滚动刮水器的WFE中的RTD实验的结果已经校准了模型。它能够描述具有良好精度的滚筒刮水系统的停留时间行为。可以在大约内再现滚动刮水器系统的停留时间行为。± 20%的结果。诸如膜厚度或封闭的胶片厚度或保持,为特征区的流体动力学提供了额外的洞察性,类似于弓波,擦拭和薄膜区的流体动力学以及若干工艺参数的效果。

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