溶质和添加剂对冰浆生产中防止冰生长的影响

IF 3.5 2区 工程技术 Q1 ENGINEERING, MECHANICAL
Hiroyuki Kumano , Takashi Morimoto , Kohta Tanaka , Toshie Koyama , Masayuki Tanino
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引用次数: 0

摘要

冰浆是一种前景广阔的功能流体,具有高热能密度和高传热率。然而,冰浆中的大冰颗粒会在冰浆流动过程中造成管道堵塞。因此,在许多领域,最好使用细小的冰颗粒来制备冰浆。在本研究中,冰浆由含有添加剂(如抗冻蛋白和聚乙烯醇)的过冷溶液生成,以防止冰浆形成过程中冰粒径的增大。实验参数包括溶质浓度和添加剂用量,并对冰颗粒的大小进行了评估。冰粒的平均面积随着添加剂的加入而减小。其中,抗冻蛋白能有效地在冰浆中生成细小的冰粒。然而,当溶质浓度越高时,添加剂的作用就越弱,而且无论溶质浓度和添加剂用量如何,冰粒的大小几乎相同。此外,研究还发现,冰点降低、溶液运动粘度和有效熔融潜热等特定属性并不影响冰浆生成过程中冰粒的大小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of solutes and additives on ice growth prevention in ice slurry production
Ice slurry is a promising functional fluid with high thermal energy density and high heat transfer rate. However, large ice particles in the ice slurry can cause blocking of tubes during ice slurry flow. Therefore, it is preferable to use fine ice particles to prepare ice slurry in many fields. In this study, ice slurries were generated from supercooled solutions containing additives, such as anti-freeze protein and polyvinyl alcohol, to prevent the increase in the ice particle size in the formation process of the ice slurry. The concentration of the solute and amount of the additive were varied as experimental parameters, and the size of the ice particles was evaluated. The average area of the ice particles decreased with the addition of the additives. In particular, anti-freeze protein was effective for generating fine ice particles in the ice slurry. However, the effects of the additives became weaker for higher concentration of the solute, and the size of the ice particles was almost the same regardless of the concentration of the solute and the amount of the additive. Moreover, it was found that particular properties, such as the freezing-point depression, kinematic viscosity of the solution, and effective latent heat of fusion, did not affect the size of the ice particles in the ice slurry generation process.
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来源期刊
CiteScore
7.30
自引率
12.80%
发文量
363
审稿时长
3.7 months
期刊介绍: The International Journal of Refrigeration is published for the International Institute of Refrigeration (IIR) by Elsevier. It is essential reading for all those wishing to keep abreast of research and industrial news in refrigeration, air conditioning and associated fields. This is particularly important in these times of rapid introduction of alternative refrigerants and the emergence of new technology. The journal has published special issues on alternative refrigerants and novel topics in the field of boiling, condensation, heat pumps, food refrigeration, carbon dioxide, ammonia, hydrocarbons, magnetic refrigeration at room temperature, sorptive cooling, phase change materials and slurries, ejector technology, compressors, and solar cooling. As well as original research papers the International Journal of Refrigeration also includes review articles, papers presented at IIR conferences, short reports and letters describing preliminary results and experimental details, and letters to the Editor on recent areas of discussion and controversy. Other features include forthcoming events, conference reports and book reviews. Papers are published in either English or French with the IIR news section in both languages.
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