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首页> 外文期刊>International Journal of Heat and Mass Transfer >Development of liquid-air mass transfer correlations for liquid desiccant dehumidification considering the liquid/air contact and film instability
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Development of liquid-air mass transfer correlations for liquid desiccant dehumidification considering the liquid/air contact and film instability

机译:考虑液体/空气接触和薄膜不稳定性的液体干燥剂除湿的液体空气传质相关性的研制

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The focus of this work is on the liquid-air mass transfer mechanism that is critical for liquid desiccant dehumidification and many other absorption processes. Most existing mass transfer correlations heavily rely on specific experiments and show poor universality. Therefore, we proposed a new set of mass transfer correlations theoretically based on the film instability during falling film dehumidification. The flow dynamic, Marangoni effect and liquid/air contact conditions that affecting the interface characteristics and wetting factors are considered. The correlations were verified by comparing with experimental data from several widely-cited literatures. The tests in these literatures were conducted under a wide range of operating conditions and dehumidifier types. The newly-developed correlations provide an acceptable prediction for liquid-air mass transfer, showing close trends to all previous experimental results. The overall error of the new predictions, 20-30%, is close to those of empirical equations built in the specific literature. The factors that affect the interphase mass transfer by changing the film instability and the wetting factor are also analyzed. The increase in liquid Reynolds number shows the most significant effect as it could effectively increase the film instability and liquid-air contact area. The liquid contact angle on solid surfaces, regarding the wettability, also affects the mass transfer considerably. By reducing the contact angle from 90 degrees to 10 degrees, although the increase in Sherwood number is slight due to the suppression of film instability, the wetting factor is almost doubled, resulting in a significant growth in mass transfer performance. This new correlation examines the falling film mass transfer process in more detail, and is based on fewer simplifying assumptions and attempts to take more realistic situations into account. Findings presented herein contribute to a more fully understanding on the falling film behaviors during liquid/gas contact such as liquid desiccant dehumidification. (C) 2019 Elsevier Ltd. All rights reserved.
机译:这项工作的重点是液体空气传质机制,对于液体干燥剂除湿和许多其他吸收过程至关重要。大多数现有的传统转移相关性严重依赖于特定实验,表现出较差的普遍性。因此,我们在理论上提出了一组新的传质相关性,从而基于薄膜除湿过程中的膜不稳定性。考虑了影响界面特性和润湿因子的流动动力,Marangoni效应和液体/空气接触条件。通过与来自几个被广泛的文献的实验数据进行比较来验证相关性。这些文献中的测试是在各种操作条件和除湿器类型的范围内进行的。新开发的相关性为液体空气传质提供了可接受的预测,呈现出所有先前实验结果的密切趋势。新预测的总体误差为20-30%,接近特定文献中建立的实证方程。还分析了通过改变膜不稳定性和润湿因子来影响相间质量传质的因素。液体雷诺数的增加显示了最显着的效果,因为它可以有效地增加薄膜不稳定和液体 - 空气接触面积。关于润湿性的固体表面上的液体接触角也大大影响了质量转移。通过将接触角从90度降低至10度,尽管由于抑制薄膜不稳定而尚的舍伍德数量略有,但润湿因子几乎加倍,导致大规模转移性能的显着增长。这种新的相关性更详细地检查了薄膜块传输过程,并且基于更少的简化假设,并试图考虑更现实情况。本文提出的发现有助于更充分地了解液体/气体接触期间液体干燥剂除湿期间的下降薄膜行为。 (c)2019 Elsevier Ltd.保留所有权利。

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