Yang Han, Yang Chunxin, Geng Leiming
School of Aeronautic Science and Engineering, Beihang University, Beijing 102206, China.
AVIC General Huanan Aircraft Industry Co., Ltd, Zhuhai 519000, China.
iScience. 2024 Jun 17;27(7):110277. doi: 10.1016/j.isci.2024.110277. eCollection 2024 Jul 19.
Humidification and dehumidification are among the most important desalination technologies, in which humidifiers and dehumidifiers are the key components. Previous research has mainly focused on overall system improvement, but few studies have focused on the thermodynamic limitations of the humidification and dehumidification processes. By introducing temperature and enthalpy effectiveness, the thermodynamic limits have been explored. It was successfully established that there are three operating states for the humidifier and dehumidifier. The analytical expressions of enthalpy and temperature effectiveness boundary values in each state were obtained. The results of visualizing the influence of mass flow ratio, inlet temperature, inlet and outlet relative humidity, and pressure on the feasible range of enthalpy and temperature effectiveness were presented. This study explores the thermodynamic limits of heat and mass transfer equipment that can be applied to other types of humidification and dehumidification equipment.
加湿和除湿是最重要的海水淡化技术之一,其中加湿器和除湿器是关键部件。以往的研究主要集中在整个系统的改进上,但很少有研究关注加湿和除湿过程的热力学限制。通过引入温度和焓效率,对热力学极限进行了探索。成功确定了加湿器和除湿器存在三种运行状态。得到了各状态下焓和温度效率边界值的解析表达式。给出了质量流量比、入口温度、进出口相对湿度和压力对焓和温度效率可行范围影响的可视化结果。本研究探索了可应用于其他类型加湿和除湿设备的传热传质设备的热力学极限。