Hybrid Methods to Quantify Ice Front Movement during Freeze-concentration Process

E. Moya-Albor, J. M. Pardo, Andrés Gregori, J. Brieva
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Abstract

Freeze concentration is an emerging separation method that can be implemented as part of a water purification system, however, its development is still at pilot plant scale. One of the useful parameters for design and control of this process is the growth velocity of the crystal, commonly known as the limit velocity. Above this limit, ice crystals will capture solids and separation will lose quality. Two-hybrid no invasive methods to follow the displacement of the ice front during a freeze concentration (FC) procedure has been tested.The methods included image segmentation, string matching technique and a bio-inspired optical flow algorithm to calculate the ice front velocity. A thermal camera was used in the experiments in order to validate the estimated movement of the ice by the image analysis procedures. Both methods were successful to follow the movement of the ice front, and the estimated displacement was between 4 and 12 pixels in 15 minutes.
冷冻浓缩过程中量化冰锋运动的混合方法
冷冻浓缩是一种新兴的分离方法,可以作为水净化系统的一部分实施,但它的发展仍处于中试工厂规模。设计和控制这一过程的有用参数之一是晶体的生长速度,通常称为极限速度。超过这个限度,冰晶将捕获固体,分离将失去质量。在冻结浓缩(FC)过程中,对双混合无创方法跟踪冰锋位移进行了试验。该方法包括图像分割、字符串匹配技术和仿生光流算法来计算冰锋速度。实验中使用了热像仪,通过图像分析程序验证了估计的冰的运动。两种方法都能成功地跟踪冰锋的运动,在15分钟内估计出的位移在4 ~ 12像素之间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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