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首页> 外文期刊>International Journal of Heat and Mass Transfer >Experimentally validated models for falling-film absorption around microchannel tube banks: Heat and mass transfer
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Experimentally validated models for falling-film absorption around microchannel tube banks: Heat and mass transfer

机译:经过实验验证的微通道管束周围降膜吸收模型:传热和传质

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摘要

A heat and mass transfer model for falling-film ammonia-water absorption over microchannel tube banks is presented. Three regions in the absorber were considered for absorption of vapor: solution pool, evolving droplets, and falling film. Flow of solution around the tube banks was modeled using a previously developed hydrodynamic model. Absorption in the solution pool and the droplet was assumed to be adiabatic, while the heat of absorption in the film was removed by circulating coupling fluid. This model was applied to measurements from a previous experimental study on a microchannel absorber. Most of the absorption was found to occur in the film region, while up to similar to 7% of the absorption was found to occur in the droplets. Heat transfer coefficients were estimated in the film region, and an empirical correlation for the film Nusselt number was developed. These models can be used to design ammonia-water falling-film absorbers. (C) 2019 Published by Elsevier Ltd.
机译:建立了降膜氨水在微通道管束上吸收的传热传质模型。考虑吸收器中的三个区域吸收蒸气:溶液池,不断发展的液滴和降膜。使用先前开发的流体力学模型对溶液在管束周围的流动进行建模。溶液池和液滴中的吸收被认为是绝热的,而薄膜中的吸收热则通过循环耦合液而被除去。该模型已应用于先前在微通道吸收器上进行的实验研究的测量结果。发现大部分吸收发生在膜区域中,而发现多达约7%的吸收发生在液滴中。估算了薄膜区域的传热系数,并得出了薄膜努塞尔数的经验相关性。这些模型可用于设计氨水降膜吸收器。 (C)2019由Elsevier Ltd.发布

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