工程热物理学报 , 2015, 36(7): 1387-1391.
本文构建了一套余热驱动的热变换器海水淡化系统,系统的废水造水比达到0.0946,较参比系统提高49%.分析了海水温度、热源水入口温度和加热蒸汽温度的变化对系统性能的影响,结果表明随着海水温度升高,系统的废水造水缓慢减小后急速下降;随着热源水入口温度的降低,废水造水比缓慢减小后急速下降;加热蒸汽温度通过影响COP和海水蒸发器效数而影响废水造水比,在75℃时存在最佳值.热源水入口温度太低,海水温度和加热蒸汽温度太高均不利于系统的稳定.
引用:
刘锋,
隋军,
韩巍,
金红光
余热驱动热变换器海水淡化系统性能研究.
工程热物理学报 ,
2015, 36(7): 1387-1391.
doi:
参考文献:
[1] Absorption heat transformers and an industrial application[J].Renewable energy,2010(10):2175.
[2] Rabah Gomri .Thermal seawater desalination: Possibilities of using single effect and double effect absorption heat transformer systems[J].Desalination: The International Journal on the Science and Technology of Desalting and Water Purification,2010(1/3):112-118.
[3] Kiyan Parham;Mortaza Yari;Ugur Atikol.Alternative absorption heat transformer configurations integrated with water desalination system[J].Desalination: The International Journal on the Science and Technology of Desalting and Water Purification,2013:74-82.
[4] Rosenberg J. Romero;A. Rodriguez-Martinez .Optimal water purification using low grade waste heat in an absorption heat transformer[J].Desalination: The International Journal on the Science and Technology of Desalting and Water Purification,2008(1/3):506-513.
[5] 解梦秋,郑宏飞,李正良,方甲闯,陈子乾,何开岩.吸收式太阳能海水淡化系统中降膜吸收与再生过程研究[J].太阳能学报,2007(05):477-481.