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Performance testing of a cross-flow membrane-based liquid desiccant dehumidification system

机译:基于错流膜的液体干燥剂除湿系统的性能测试

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摘要

A membrane-based liquid desiccant dehumidification system is one of high energy efficient dehumidification approaches, which allows heat and moisture transfers between air stream and desiccant solution without carryover problem. The system performance is investigated experimentally with calcium chloride, and the impacts of main operating parameters on dehumidification effectiveness (i.e. sensible, latent and total effectiveness) are evaluated, which include dimensionless parameters (i.e. solution to air mass flow rate ratio m∗ and number of heat transfer units NTU) and solution properties (i.e. concentration Csol and inlet temperature Tsol,in). The sensible, latent and total effectiveness reach the maximum values of 0.49, 0.55, and 0.53 respectively at m∗= 3.5 and NTU = 12, and these effectiveness are not limited by m∗ and NTU when m∗ > 2 and NTU > 10. Both the latent and total effectiveness increase with Csol , while almost no variation is observed in the sensible effectiveness. All effectiveness can be improved by decreasing Tsol,in. The experimental data provide a full map of main design parameters for the membrane-based liquid desiccant air conditioning technology.
机译:基于膜的液体干燥剂除湿系统是高能效除湿方法之一,它允许热量和水分在空气流和干燥剂溶液之间传递,而不会带来残留问题。用氯化钙进行了系统性能的实验研究,并评估了主要运行参数对除湿效率(即有效,潜能和总效率)的影响,其中包括无量纲的参数(即溶液与空气质量流量比m *和空气质量数)。传热单位NTU)和溶液特性(即浓度Csol和入口温度Tsol,in)。当m ∗ = 3.5和NTU = 12时,明智的,潜在的和总的有效性分别达到0.49、0.55和0.53的最大值,并且当m ∗> 2和NTU> 10时,这些有效性不受m ∗和NTU的限制。 Csol会提高潜在效力和总效力,而在显着效力方面几乎没有观察到变化。降低Tsol,in可改善所有效能。实验数据提供了基于膜的液体干燥剂空调技术主要设计参数的完整图谱。

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