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首页> 外文期刊>Journal of Energy Resources Technology >Solar-Assisted Liquid Desiccant Dehumidification Using Hollow- Fiber and Parallel-Plate Membrane Dehumidifiers: Comparative Analysis
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Solar-Assisted Liquid Desiccant Dehumidification Using Hollow- Fiber and Parallel-Plate Membrane Dehumidifiers: Comparative Analysis

机译:使用中空纤维和平行板膜除湿机的太阳能辅助液体干燥剂除湿:对比分析

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In hot and humid climates, air conditioning is an energy-intensive process due to the latent heat load. A unitary air conditioner system is proposed, here, to reduce the latent heat of the humid air using a liquid desiccant followed by an evaporative cooling system. The heat liberated by the desiccant is removed by a solution to the solution heat exchanger. To restore the concentration of the liquid desiccant, the desiccant solution is regenerated by any low-temperature heat source such as solar energy. In order to make the system compact, the membrane heat exchanger is used for the dehumidifier and regenerator. This paper presents the numerical investigation of heat and mass transfer characteristics of a selected membrane dehumidifier under different climatic parameters. Membrane-based parallel-plate and hollow-fiber exchangers are used for this application. A parallel-plate heat-and-mass exchanger (contactor) is composed of a series of plate-type membrane sheets to form channels. On the other hand, hollow-fiber membranes are packed in a shell to form a shell-and-tube heat-and-mass exchanger. The two streams of both contactors are in a counter parallel flow, separated by micro-porous semi-permeable hydrophobic membranes. In this research, the equations governing the transport of heat and mass between the two streams along with the membrane effect in both contactors are solved numerically. The results are compared at different number-of-transfer units (NTU) on the airside and thermal capacity ratios. It is found that the hollow fiber is more efficient than the parallel plate.
机译:在炎热和潮湿的气候中,由于潜热负荷,空调是一个能源密集型过程。这里,提出了一种整体式空调系统,以使用液体干燥剂随后是蒸发冷却系统来减少湿空气的潜热。干燥剂释放的热量被溶液带到溶液热交换器。为了恢复液体干燥剂的浓度,干燥剂溶液通过任何低温热源例如太阳能来再生。为了使系统紧凑,膜式热交换器用于除湿器和再生器。本文介绍了在不同气候参数下所选膜式除湿机的传热和传质特性的数值研究。基于膜的平行板和中空纤维交换器用于此应用。平行板热质交换器(接触器)由一系列板状膜片组成以形成通道。另一方面,将中空纤维膜包装在壳中以形成壳管式热质交换器。两个接触器的两个流以平行反向流动,被微孔半透性疏水膜隔开。在这项研究中,控制两个流之间的热量和质量传递以及两个接触器中的膜效应的方程式得到了数值求解。在空侧和热容量比的不同传输单元(NTU)上比较结果。发现中空纤维比平行板更有效。

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