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Steady-state performance evaluation and energy assessment of a complete membrane-based liquid desiccant dehumidification system

机译:完整的基于膜的液体干燥剂除湿系统的稳态性能评估和能量评估

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摘要

A complete membrane-based liquid desiccant dehumidification system is investigated under the steady operating condition, which mainly consists of a dehumidifier, a regenerator, three heat exchangers, a cold and a hot water supply units. A finite difference mathematical model is developed for the complete system to investigate the system dehumidification performance and energy requirement, and validated by experimental data. The dehumidification performance is evaluated by the system sensible and latent effectiveness and moisture flux rate, while its energy performance is assessed by the total cooling capacity and coefficient of performance. It is found that the number of heat transfer units in the dehumidifier side and solution to air mass flow rate ratio have the most considerable impact on the system performance, while the number of heat transfer units in the regenerator side and solution inlet concentration in the dehumidifier have comparatively weak influences. The system sensible and latent effectiveness can be improved by increasing the dehumidifier side number of heat transfer units before reaching its critical value of 6. However, the amount of moisture being absorbed, total cooling capacity and coefficient of performance decrease with the dehumidifier side number of heat transfer units at the low air flow rate. The critical value of solution to air mass flow rate ratio varies with number of heat transfer units, and it is preferable to keep the flow rate ratio at or below its critical value as further increasing solution flow rate would reduce the system coefficient of performance.
机译:在稳态运行条件下,研究了一套完整的膜基液体干燥剂除湿系统,该系统主要由除湿机,蓄热室,三个热交换器,冷水机组和热水供应单元组成。针对整个系统开发了一个有限差分数学模型,以研究系统的除湿性能和能量需求,并通过实验数据进行了验证。除湿性能通过系统的合理和潜在有效性以及湿气通量率进行评估,而其能量性能则通过总制冷量和性能系数进行评估。发现除湿器侧的传热单元数量和溶液与空气质量流量比对系统性能的影响最大,而回热器侧的传热单元数量和除湿器中溶液入口的浓度影响相对较小。通过在达到其临界值6之前增加换热器的除湿器侧数,可以提高系统的合理性和潜在效力。但是,随着除湿器侧数的增加,吸收的湿气量,总冷却能力和性能系数会降低。空气流量低的传热单元。溶液与空气质量流量比的临界值随传热单元的数量而变化,并且优选将流量比保持在或低于其临界值,因为进一步增加溶液流量将降低系统的性能系数。

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