期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
MHD低温蒸发系统内填料蒸发器蒸发过程的研究 被引量:1
1
作者 袁惠新 陆明佳 +2 位作者 金澄澄 雒维文 丁南华 《流体机械》 CSCD 北大核心 2018年第8期83-88,70,共7页
MHD(Multistage humidification-dehumidification)低温蒸发技术,可以用太阳能、余热或废热为热源,低成本地处理高浓度污水,且蒸发温度低、节能效果显著。其中的填料蒸发器是一个重要部件,其特点是传热传质效率高、结构紧凑。本文基于... MHD(Multistage humidification-dehumidification)低温蒸发技术,可以用太阳能、余热或废热为热源,低成本地处理高浓度污水,且蒸发温度低、节能效果显著。其中的填料蒸发器是一个重要部件,其特点是传热传质效率高、结构紧凑。本文基于非稳态三维气液流动,研究了填料蒸发器内的蒸发过程,包括液相颗粒质量变化、温度分布以及水蒸气浓度分布,揭示了填料蒸发器内废水原液蒸发及对干燥空气加湿的规律,为MHD低温蒸发系统填料蒸发器的结构性能优化以及蒸发系统整体性能计算提供了依据。 展开更多
关键词 mhd低温蒸发技术 mhd低温蒸发系统 填料蒸发器 传热传质 加湿
下载PDF
Thermodynamic optimization and fluid selection of organic Rankine cycle driven by a latent heat source 被引量:4
2
作者 徐鹏 吕建 +1 位作者 李太禄 朱家玲 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第12期2829-2841,共13页
Organic Rankine cycle(ORC) is applicable for the heat-work conversion. Whereas, there also exist a lot issues that influence the efficiency and the cost of the system. In this work, eleven pure working fluids(as categ... Organic Rankine cycle(ORC) is applicable for the heat-work conversion. Whereas, there also exist a lot issues that influence the efficiency and the cost of the system. In this work, eleven pure working fluids(as categorized into alkanes, and fluorinated alkanes) are investigated based on the first and second law of thermodynamics. The major objective is to obtain the most suitable working fluid for the latent heat source. The results show that the working fluid is an important factor of the system performance. The heat absorption of the working fluid in the evaporator is inversely proportional to the evaporating temperature, but the thermal and exergetic efficiencies are just the opposite. RC318 has the highest net power output and the lowest outlet temperature of the heat source, but its global warming potential(GWP) value is too high. The cyclohexane shows the highest thermal efficiency among the fluids investigated. Moreover, the figure of merit(FOM) of the isobutane is higher than that of other working fluids. Overall, the cyclohexane shows that the optimal comprehensive performance is more feasible for medium grade heat source in engineering applications. 展开更多
关键词 organic Rankine CYCLE working FLUIDS THERMODYNAMICS low-temperature evaporATING temperature
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部