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Experimental Study of Performance Improvement of 3-Bed and 2-Evaporator Adsorption Chiller by Control Optimization

机译:用控制优化对3床和2蒸发器吸附冷却器性能改进的实验研究

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摘要

The main challenge facing adsorption cooling technology is low Coefficient of Performance (COP), which becomes a key factor of the commercialization of this technology. This paper presents the results of modifications, aiming to increase COP, applied to the control software of a prototype three-bed two-evaporator adsorption chiller. Changes were mainly related to the sequence of the switching valves and had no influence on the hardware of the chiller. The sequence changes enabled the introduction of heat recovery and mass regeneration. Moreover, the precooling process was improved. The applied modifications not only resulted in significant improvement of the chiller’s COP, but also improved the cooperation adsorption unit heating source, which is of great importance in case of district heating supply. The improvement was also observed concerning such operational aspects as noise and vibrations. In the authors’ opinion, the presented modifications can be introduced to most exploited adsorption chillers and could potentially lead to similar improvements in performance.
机译:吸附冷却技术面临的主要挑战是低性能系数(COP),成为该技术商业化的关键因素。本文介绍了修改的结果,旨在增加COP,应用于原型三层双蒸发器吸附冷却器的控制软件。变化主要与开关阀的顺序相关,对冷却器的硬件没有影响。序列变化使得能够引入热回收和质量再生。此外,预处理过程得到了改善。应用的修改不仅导致冷却器的警察的显着改进,而且还改善了合作吸附单元加热源,这在区域供热时具有重要意义。还观察到这种操作方面作为噪声和振动的改善。在作者的意见中,可以将所提出的修改引入大多数利用的吸附冷却器,可能导致性能的类似改善。

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