...
首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Experimental study of a solidified activated carbon-methanol adsorption ice maker
【24h】

Experimental study of a solidified activated carbon-methanol adsorption ice maker

机译:固化活性炭-甲醇吸附制冰机的实验研究

获取原文
获取原文并翻译 | 示例
           

摘要

In this paper, the experiments are performed on an adsorption ice maker driven by waste heat, which uses up to two beds. Each bed uses methanol as refrigerant and solidified activated carbon (120 kg adsorbent totally, 60 kg adsorbent per bed) as adsorbent. This system is designed to be driven by the waste heat of a 100 kW diesel engine. The experiments show that the cooling power could be enhanced by the mass recovery process up to 11%, and the heating power could be lowered by the heat recovery process up to 30%. The optimal cooling power of this prototype is about 2.0 kW and corresponds to a specific cooling power (SCP) is about 17 W/kg with both heat and mass recoveries between two beds. Considering the optimal adsorption time is much linger than optimal desorption time at the condition of ice making, the experiments are operated on single bed (60 kg adsorbent per bed) and the adsorption time used in experiments is two times of desorption time, then the performance of a three-bed adsorption ice maker (120 kg adsorbent totally, 40 kg adsorbent per bed) is predicted by the results of experiments on this single bed. The results of prediction show that both COP and cooling power of three-bed operation could be enhanced greatly compared to the two-bed operation; optimal SCP and COP are respectively 22 W/kg and 0.239 when mass and heat recoveries proceed between three beds. Optimal ice productivity of this three-bed system is 21 kg/h when the water temperature is 25 ℃ and ice temperature is -7 ℃.
机译:在本文中,实验是在由废热驱动的吸附制冰机上进行的,该制冰机最多使用两张床。每个床使用甲醇作为制冷剂,并使用固化的活性炭(总共120千克吸附剂,每床60千克吸附剂)作为吸附剂。该系统设计为由100 kW柴油机的废热驱动。实验表明,质量回收过程可将冷却功率提高至11%,而热量回收过程可将加热功率降低至30%。该原型机的最佳冷却功率约为2.0 kW,对应的特定冷却功率(SCP)约为17 W / kg,两个床之间的热量和质量回收率都很高。考虑到最佳的吸附时间比制冰条件下的最佳脱附时间长得多,因此在单床(每床60 kg吸附剂)上进行实验,并且实验中使用的吸附时间是脱附时间的两倍,则性能通过在该单人床上进行的实验结果,可以预测三床吸附制冰机的容量(总共120 kg吸附剂,每床40 kg吸附剂)。预测结果表明,与两床运行相比,三床运行的COP和冷却功率都可以大大提高。当在三张床之间进行质量和热量回收时,最佳SCP和COP分别为22 W / kg和0.239。当水温为25℃,冰温为-7℃时,该三床系统的最佳制冰能力为21 kg / h。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号