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Experimental study of dynamic characteristics of liquid desiccant dehumidification processes

机译:液体干燥剂除湿过程动力学特性的实验研究

摘要

Liquid desiccant dehumidification is an effective method of removing moisture from the air for air conditioning in built environments. The dehumidifier is a critical component where coupled heat and mass transfer between the desiccant solution and the air occurs. Understanding the dynamic characteristics of the dehumidifier is essential to develop controllers and operation strategies for the liquid desiccant hybrid air-conditioning systems. This article presents an experimental study of the dynamic heat and mass transfer characteristics of a counter-flow packed-type liquid desiccant dehumidifier. Experiments were carried out to investigate the dynamic responses of the outlet air and desiccant solution to various changing inlet conditions. In addition, the influences of typical configuration and operation parameters on the dynamic dehumidification process were analyzed. The results indicate that the settling time of the dynamic process decreases with the air and solution flow rates while increases with the packing height. The experimental results also show that the outlet air humidity ratio stabilizes sooner than the outlet air temperature during the dynamic process. The time constants of the heat and mass transfer processes were obtained, which are valuable to controller design.
机译:液体干燥剂除湿是一种在建筑环境中从空气中去除水分以进行空调调节的有效方法。除湿机是至关重要的组件,在干燥机溶液和空气之间会发生耦合的热量和质量传递。了解除湿机的动态特性对于开发液体干燥剂混合空调系统的控制器和操作策略至关重要。本文介绍了逆流填充式液体干燥剂除湿机的动态传热和传质特性的实验研究。进行实验以研究出口空气和干燥剂溶液对各种变化的入口条件的动态响应。此外,分析了典型配置和运行参数对动态除湿过程的影响。结果表明,动态过程的沉降时间随空气和溶液流速的增加而减少,而随填料高度的增加而增加。实验结果还表明,在动态过程中,出风口湿度比出风口温度稳定的时间要早​​于出风口温度。获得了传热和传质过程的时间常数,这对于控制器设计很有价值。

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