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Study on the COP of free piston Stirling cooler (FPSC) in the anti-sublimation CO2 capture process

机译:自由活塞斯特林冷却器(FPSC)在反升华CO2捕集过程中的COP研究

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摘要

Free piston Stirling cooler (FPSC) is a promising alternative for the conventional coolers and has been applied to various fields. In the previous research, a novel cryogenic CO2 capture system based on FPSCs has been exploited. In order to enhance the cryogenic CO2 capture efficiency, the investigation on the coefficient of performance (COP) of the FPSC is carried out in this work. In detail, the influence of different materials (aluminium and copper), size of cold head (length and diameter), as well as ambient conditions (humidity and temperature) on the COP of the cryogenic system were tested. The experiment results indicate that the material of cold head should be selected at copper to increase the COP of CO2 capture system. The length and diameter of cold head should be short and thick. In addition, the low ambient temperature is benefit for the high COP. For the optimal conditions (the material was copper, length and diameter were 180 and 40 mm, respectively), the temperature of the cold head reached −140 °C, and the COP of the FPSC and the cryogenic CO2 system was 0.82 and 0.70, respectively.
机译:自由活塞式斯特林冷却器(FPSC)是传统冷却器的有希望的替代品,已应用于各种领域。在先前的研究中,已经开发了一种基于FPSC的新型低温CO2捕集系统。为了提高低温CO2捕集效率,在这项工作中进行了FPSC的性能系数(COP)的研究。详细地,测试了不同材料(铝和铜),冷头尺寸(长度和直径)以及环境条件(湿度和温度)对低温系统COP的影响。实验结果表明,应选择冷头材料为铜,以提高CO2捕集系统的COP。冷头的长度和直径应短而粗。此外,低环境温度有利于提高COP。在最佳条件下(材料为铜,长度和直径分别为180和40 mm),冷头温度达到-140°C,FPSC和低温CO2系统的COP为0.82和0.70,分别。

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