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Advances in heat and mass transfer in the membrane-based dehumidifiers and liquid desiccant air dehumidification systems

机译:基于膜的除湿机和液体干燥剂空气除湿系统中的热量和传质的进展

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The membrane-based liquid desiccant air dehumidification method had been reviewed based on the momentum, thermal, and mass transports, the performance analysis, and the thermodynamics. The parallel-plate membrane dehumidifiers (PMC) and hollow fiber membrane dehumidifiers (HFMC) with the cross-flow, quasi-counter flow, and counter flow configurations were summarized. The adiabatic and internally-cooled membrane dehumidifiers were described. The single-stage and the multistage membrane-based liquid desiccant air dehumidification (M-LDAD) systems to enhance their performances were analyzed. The internally-cooled quasi-counter flow PMC of the side in and side out type and hexagonal type were the promising alternatives. The counter flow and cross-flow HFMC were suitable for the small and relatively large air flow rates, respectively. The inclined flow type should be avoided to prevent from the performance deterioration. The internally-cooled HFMC with the cooling coils inside the solution channels between the neighboring short sub-contactors might have better performances with at the expenses of increasing equipment and operating costs. Effects of the membrane deformations on the momentum, thermal, and mass transports both in the PMC and HFMC should be studied. The randomly distributions of the hollow fiber tubes should be avoided. The multistage M-LDAD systems based on the internally-cooled PMC and HFMC complementarily driven by the waste energy and renewable energy sources were the better choices in the practical application whose thermodynamic and dynamics should be investigated. (C) 2019 Elsevier Ltd. All rights reserved.
机译:基于动量,热量和大规模运输,性能分析和热力学进行审查,综述基于膜的液体干燥剂空气除湿方法。总结了平行板膜除湿剂(PMC)和中空纤维膜除湿剂(HFMC),具有交叉流动,准计数器和反流配置。描述了绝热和内部冷却的膜除湿剂。分析了单级和多级膜的液体干燥剂空气除湿(M-LDAD)系统,以增强其性能。内部冷却的准计数器流量PMC和侧向型和六边形类型是有前途的替代品。计数器流量和交叉流HFMC分别适用于小且相对较大的空气流速。应避免倾斜流动类型以防止性能劣化。内部冷却的HFMC与邻近的短子接触器之间的溶液通道内的冷却线圈可能具有更好的性能,以增加设备和运营成本的费用。应研究膜变形对PMC和HFMC中的动量,热和质量传输的影响。应避免中空纤维管的随机分布。基于内部冷却的PMC和HFMC的多级M-LDAD系统由废能和可再生能源互补地驱动的实际应用中的选择是更好的选择,其热力学和动力学应研究。 (c)2019 Elsevier Ltd.保留所有权利。

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