首页> 外文期刊>Energy >Performance evaluation of membrane-based absorbers employing H2O/(LiBr + LiI + LiNO3 + LiCl) and H2O/(LiNO3 + KNO3 + NaNO3) as working pairs in absorption cooling systems
【24h】

Performance evaluation of membrane-based absorbers employing H2O/(LiBr + LiI + LiNO3 + LiCl) and H2O/(LiNO3 + KNO3 + NaNO3) as working pairs in absorption cooling systems

机译:H2O /(LiBr + LiI + LiNO3 + LiCl)和H2O /(LiNO3 + KNO3 + NaNO3)作为吸收冷却系统中的工作对的膜基吸收器的性能评估

获取原文
获取原文并翻译 | 示例
           

摘要

In recent years, rigorous research has been carried out on the use of membrane contactors to design compact absorbers for absorption cooling systems and to extend their use in small scale applications. Moreover, the use of new working fluid mixtures has been suggested for the absorption cooling systems to cope with the limitations and problems associated with the conventional working fluid mixtures. In this study, water/(LiBr + Lii + LiNO3 + LiCl) with mass compositions in salts of 60.16%, 9.55%, 18.54% and 11.75%, respectively, and water/(LiNO3 + KNO3 + NaNO3) with mass compositions in salts of 53%, 28% and 19%, respectively, were investigated for air-cooled and multi-stage high temperature absorption cooling systems, respectively. Results show that a 25% increase in the absorption rate can be achieved by using water/(LiBr + Li + LiNO3 + LiCl) when compared to water/LiBr at air-cooling thermal conditions. Furthermore, an absorption rate as high as 0.00523 kg/m(2) s is achieved when the water/(LiNO3 + KNO3 + NaNO3) working fluid mixture is used in the membrane-based absorber of the third stage of a triple effect absorption cooling cycle. In addition, the pressure drop percentage in the case of water/(LiNO3 + KNO3 + NaNO3) working fluid mixture is significantly lower than the water/LiBr and water/(LiBr + Lil + LiNO3 + LiCl) working fluid mixtures because of the higher operating pressure. (C) 2016 Elsevier Ltd. All rights reserved.
机译:近年来,对膜接触器的使用进行了严格的研究,以设计用于吸收式冷却系统的紧凑型吸收器,并扩大其在小规模应用中的用途。此外,已经提出将新的工作流体混合物用于吸收式冷却系统,以解决与常规工作流体混合物相关的限制和问题。在这项研究中,水/(LiBr + Lii + LiNO3 + LiCl)的质量组成分别为60.16%,9.55%,18.54%和11.75%,水/(LiNO3 + KNO3 + NaNO3)的质量组成为盐对于风冷和多级高温吸收式冷却系统,分别研究了53%,28%和19%。结果表明,与水/ LiBr在空冷热条件下相比,使用水/(LiBr + Li + LiNO3 + LiCl)可使吸收率提高25%。此外,将水/(LiNO3 + KNO3 + NaNO3)工作流体混合物用于三效吸收冷却第三阶段的膜基吸收器中时,吸收率高达0.00523 kg / m(2)s周期。此外,在水/(LiNO3 + KNO3 + NaNO3)工作流体混合物的情况下,压降百分比显着低于水/ LiBr和水/(LiBr + Lil + LiNO3 + LiCl)工作混合物,因为压降百分比更高运营压力。 (C)2016 Elsevier Ltd.保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
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