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首页> 外文期刊>International Journal of Refrigeration >Heat and mass transfer models for horizontal-tube falling-film ammonia-water absorption
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Heat and mass transfer models for horizontal-tube falling-film ammonia-water absorption

机译:水平管落膜氨水吸收的热量和传质模型

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摘要

An experimental investigation of heat and mass transfer in a horizontal-tube falling-film ammonia-water absorber, operated as part of a complete ammonia-water absorption test facility, is presented. A tube bank consisting of four columns of six 9.5 mm nominal outer diameter, 0.292 m long tubes was installed in an absorber shell that allowed flow visualization and heat and mass transfer measurements at component-and local-levels. The Falling-film mode was found to account for a major portion of the absorber. The effects of operating conditions on the heat and mass transfer coefficients were investigated. While the solution Nusselt number increased, the vapor and liquid Sherwood numbers remained relatively insensitive to the solution Reynolds number. Heat and mass transfer models were developed to predict the absorber performance over a wide range of operating conditions in air-conditioning and heat pumping modes (solution concentration: 5-40%, pressures: 150, 345, 500 kPa, and solution flow rates: 0.019-0.034kg s(-1)). (C) 2019 Elsevier Ltd and IIR. All rights reserved.
机译:提出了作为完全氨吸收试验设施的一部分的水平管落膜氨水吸收器中热量和传质的实验研究。由四列六个六个9.5mm标称外径组成的管芯,在吸收体壳中安装了0.292米长管,其在组分和局部水平下允许流动可视化和热量和传质测量。发现下降膜模式考虑了吸收器的主要部分。研究了操作条件对热量和传质系数的影响。虽然解决方案NUSERET数增加,但蒸汽和液体舍伍德数对溶液雷诺数保持相对不敏感。开发了热量和传质模型,以预测空调和热泵模式中各种操作条件下的吸收性能(溶液浓度:5-40%,压力:150,345,500kPa和溶液流速: 0.019-0.034kg s(-1))。 (c)2019年Elsevier Ltd和IIR。版权所有。

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