首页> 外文会议>ISES biennial solar world congress >Comparison of the performance of single effect, half effect, double effect in series and inverse absorption cooling systems operating with the mixture H_2O-LiBr
【24h】

Comparison of the performance of single effect, half effect, double effect in series and inverse absorption cooling systems operating with the mixture H_2O-LiBr

机译:H_2O-LiBr混合气体在串联和反向吸收冷却系统中单效,半效,双效的性能比较

获取原文
获取外文期刊封面目录资料

摘要

This paper presents a performance comparison of four different configurations for absorption cooling systems operating with water-lithium bromide mixture. The configurations are: ⅰ) single effect, ⅱ) half effect, ⅲ) double effect in series, and ⅳ) double effect inverse. Every system is described in detail and a mathematical model was developed for each one of them. Coefficients of performance and flow ratios are reported for the systems as function of their main operating temperatures, such as: generation, absorption, condensation, and evaporation. From the results analysis regarding to evaporation temperatures, this mixture is easily associated with air-conditioning applications. It is seen that the single effect obtains theoretical coefficients of performance up to 0.89 at generation temperatures between 100 °C and 110 °C. On the other hand, it was observed that half effect systems may operate with generation temperatures from 55 °C, but obtaining coefficients of performance almost half of those obtained with single effect systems. Finally, it was found that double effect systems are the most efficient, reaching coefficients of performance up to 1.48, however, they are more complex and require generation temperatures as high as 158 °C. It is important to mention that half effect systems work better than any other when condensation and absorptions temperatures are as high as 40 °C.
机译:本文介绍了使用水-溴化锂混合物运行的吸收式冷却系统的四种不同配置的性能比较。配置为:ⅰ)单效,ⅱ)半效,ⅲ)串联双效和double)双效逆。详细描述了每个系统,并为每个系统开发了一个数学模型。据报告,系统的性能和流量系数是其主要工作温度的函数,例如:产生,吸收,冷凝和蒸发。从有关蒸发温度的结果分析来看,这种混合物很容易与空调应用相关联。可以看出,在100°C至110°C的产生温度下,单一效应可获得高达0.89的理论性能系数。另一方面,观察到半效系统可以在55°C的发电温度下运行,但获得的性能系数几乎是单效系统的一半。最后,发现双重效应系统是最有效的,达到高达1.48的性能系数,但是,它们更为复杂,并且需要高达158°C的发电温度。值得一提的是,当冷凝和吸收温度高达40°C时,半效系统的性能要优于其他任何系统。

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