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首页> 外文期刊>International Journal of Refrigeration >Development of a slug flow absorber working with ammonia-water mixture - Part II: data reduction model for local heat and mss transfer characterization
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Development of a slug flow absorber working with ammonia-water mixture - Part II: data reduction model for local heat and mss transfer characterization

机译:使用氨水混合物的团状流吸收器的开发-第二部分:局部热量和mss传递特性的数据缩减模型

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摘要

This study deals with a data reduction model for clarifying experimental results of a counter-current slug flow absorber, working with ammonia-water mixture, for significantly low solution flow rate conditions. The data reduction model to obtain the local heat and mass transfer coefficient on the liquid side is proposed by using the drift flux model to analyze the flow characteristics. The control volume method and heat and mass transfer analogy are employed to solve the combined heat and mass transfer problem. As a result, it is found that the local heat and mass transfer coefficient on the liquid side of the absorber is greatly influenced by the flow pattern. The heat and mass transfer coefficient at the frost flow region is higher than that at the slug flow region due to flow disturbance and random fluctuation. The solution flow rate and gas flow rate have influence on the local heat and mass transfer coefficient at the frost flow region. However, it is insignificant at the slug flow region.
机译:这项研究涉及一个数据缩减模型,用于阐明在氨水混合物的情况下,在明显低的溶液流速条件下,逆流段塞式吸收塔的实验结果。通过使用漂移通量模型分析流动特性,提出了数据简化模型,以求得液体侧的局部传热传质系数。控制体积法和传热传质的类比被用来解决传热传质的综合问题。结果发现,在吸收器的液体侧的局部传热和传质系数受流动方式的很大影响。由于流动扰动和随机波动,在霜流区域的传热和传热系数高于团状流区域。溶液流量和气体流量会影响霜流区域的局部传热和传质系数。然而,在团状流动区域它是微不足道的。

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