Indrawan Wisnu, Lubis Arnas, Alhamid M I
Department of Mechanical Engineering, Universitas Indonesia, Depok, 16424, Indonesia.
Case Stud Therm Eng. 2022 Nov;39:102440. doi: 10.1016/j.csite.2022.102440. Epub 2022 Sep 19.
Significant focus has been placed on improving Indoor Air Quality (IAQ) due to the emergence of the large-scale severe acute respiratory syndrome (SARS) virus epidemic in the air conditioning system of buildings. There is also a need for an adequate air ventilation system that balances energy needs with air quality. This led to the discovery of liquid desiccants which have the ability to enhance air quality and lower primary energy usage as an alternative to the standard air dehumidification technology. Therefore, this study was conducted to investigate the dehumidification and regeneration processes in a Fin and tube liquid desiccant system. This involved flowing air horizontally while the ionic liquid flowed through the cooling or heating coil vertically downward to create a cross-flow fin and tube configuration. In the testing process, we obtained measurements of relative humidity and dry bulb temperature inlet and outlet from ducting by varying the input parameters. Moreover, the differential humidity ratio of the inlet and output process for the dehumidification and regeneration was observed to be essential for the dehumidifier performance indices. The experimental result showed that the system absorbed a humidity ratio of 5.5 g/kg during the dehumidification process and released 10.7 g/kg during regeneration.
由于建筑物空调系统中出现大规模严重急性呼吸综合征(SARS)病毒疫情,人们已将重点显著放在改善室内空气质量(IAQ)上。还需要一个能在能源需求和空气质量之间取得平衡的充足空气通风系统。这促使人们发现了液体干燥剂,它有能力提高空气质量并降低一次能源使用量,可作为标准空气除湿技术的替代方案。因此,本研究旨在调查翅片管式液体干燥剂系统中的除湿和再生过程。这包括让空气水平流动,同时离子液体垂直向下流经冷却或加热盘管,以形成错流翅片管式结构。在测试过程中,我们通过改变输入参数,获得了管道进出口处相对湿度和干球温度的测量值。此外,观察到除湿和再生过程中进出口的湿度比差值对于除湿器性能指标至关重要。实验结果表明,该系统在除湿过程中吸收的湿度比为5.5克/千克,在再生过程中释放的湿度比为10.7克/千克。