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云师大李明教授在Energy Conversion and Management上刊文

已有 3539 次阅读 2017-12-18 20:03 |个人分类:云师大研究|系统分类:人物纪事|关键词:学者

Energy Conversion and Management

Volume 155, 1 January 2018, Pages 253-261

Energy Conversion and Management

Experimental investigation of a solar-powered adsorption refrigeration system with the enhancing desorption

Author links open overlay panelYunfengWangMingLiWenpingDuXuJiLinXu

https://doi.org/10.1016/j.enconman.2017.10.065Get rights and content

Highlights


  • An enhancing mass transfer method based on the basic adsorption cycle is proposed.

  • A new enhancing desorption solar adsorption refrigerator is designed and built.

  • The comparison tests under different weather conditions are conducted.

  • The circulating mass of refrigerant and COP of the new system are greatly improved.

  • The desorption period of the new system is shortened.


Abstract

The paper proposes a novel solar adsorption refrigeration system employing an active enhancing mass transfer method based on the typical basic cycle. In essence, the new method is to drop the internal pressure of the system in the desorption process. The working principle of the hypothesis and the cycle description are explained in detail and analyzed by laboratory experiments. The novel solar adsorption refrigeration system prototype with activated carbon-methanol as working pair was designed and built. Some different comparative tests under different weather conditions were conducted to prove the hypothesis and evaluate the performance of the novel adsorption refrigeration system. The experimental results show that the system employing an active enhancing mass transfer method will increase the mass of desorbed refrigerant by about 20% if compared with a natural desorption refrigeration system. It was also proved that the novel method is very effective for low adsorbent temperature operation, which may help to obtain a COPsolar increase of at least 16.4%. And about one and half hours can be saved by enhancing desorption refrigeration system to get the same desorbed refrigerant with the natural desorption refrigeration system. The results of experiments show that the novel system has improvements in the coefficient of performance, the mass of desorption and desorption rate, and the characters of the solar adsorption refrigeration system can be a benefit to further application.

Graphical abstract


这是云南师范大学李明教授继RENEWABLE & SUSTAINABLE ENERGY REVIEWS、SOLAR ENERGYENERGY CONVERSION AND MANAGEMENT、ENERGY杂志刊文后的有一篇重要学术论文。



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