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A dynamic dehumidifier model for simulations and control of liquid desiccant hybrid air conditioning systems

机译:动态除湿器模型,用于液体干燥剂混合空调系统的仿真和控制

摘要

Liquid desiccant (LD) dehumidification has attracted increasing attentions and its applications in air conditioning are emerging in recent years. The dynamic characteristics of the dehumidifier are essential to design and tune controllers for LD hybrid air conditioning systems. Existing research on liquid desiccant dehumidifier focuses on steady state condition. There is a lack of a computationally efficient yet accurate dynamic dehumidifier model for the purpose of control and dynamic simulations. This study develops a simplified one-dimensional dynamic model of a counter flow packed-type dehumidifier. The approach to quantifying the thermal mass of packing material and desiccant solution held in dehumidifier is developed for the first time and implemented in the dynamic model. Validation results show that the dynamic model is in better agreement with experiment than the static model. Root-Mean-Square Errors (RMSEs) between the simulation results of dynamic model and the experimental results are about 0.2 g/kg for the outlet air humidity ratio and 0.2 C for the outlet air temperature. In addition, sensitivity analysis is conducted to investigate the effects of the thermal mass on the dehumidifier dynamics. The dynamic model and the results are valuable to design and tune controllers and dynamic simulations of the LD hybrid air conditioning systems.
机译:液体干燥剂(LD)的除湿已引起越来越多的关注,并且近年来在空调中的应用正在兴起。除湿机的动态特性对于LD混合空调系统的控制器设计和调试至关重要。液体干燥剂除湿机的现有研究集中在稳态条件下。缺乏用于控制和动态仿真的计算有效而精确的动态除湿器模型。这项研究开发了逆流包装式除湿机的简化的一维动力学模型。首次开发了量化除湿机中包装材料和干燥剂溶液热质量的方法,并在动态模型中实现。验证结果表明,动态模型与实验模型比静态模型具有更好的一致性。动态模型的仿真结果与实验结果之间的均方根误差(RMSE)约为0.2 g / kg(出口空气湿度比)和0.2 C(出口空气温度)。另外,进行敏感性分析以研究热质量对除湿机动力学的影响。动态模型和结果对于设计和优化LD混合空调系统的控制器和动态仿真非常有价值。

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