论文成果
Airflow-assisted array evaporators achieving ultra-high solar evaporation rates: Experimental and simulation study
点击次数:
关键字:WATER; EFFICIENCY; CHANNEL; FIBER
摘要:Solar-driven interfacial evaporation (SIE) as a new technology is considered a promising green and sustainable strategy in the context of global freshwater scarcity. At present stage, high evaporation rate is still the main pursuit. Array evaporators enable high evaporation rates due to their enlarged surface area. However, further enhancement on the performance of array evaporators by airflow remains unexplored. In this study, we developed a 3D evaporator in the form of arrays composed of wooden pillars with carbonized surface. Extra evaporation surface area, derived from the structural design, led to high evaporation rate which was further increased by the introduction of airflow. Simulation results showed that airflow can significantly enhance the diffusion of vapor, reduce the partial pressure of water, minimize the hot zone on the evaporation surface, and therefore promote efficient water evaporation. As a result, the array offered an evaporation rate of 13.2 kg m-2h- 1 under 1.0-sun illumination at an airflow velocity of 3.5 m s- 1 , a 270 % enhancement compared to the value in static conditions. This value is significantly higher than most of the previously reported data. It is anticipated that airflow-assisted arrays as efficient solar evaporators, with the help of compatible strategies for the condensation of vapor and collection of freshwater, will achieve high yield and break the bottleneck that limits the large-scale application of SIE.
卷号:504
期号:
是否译文:

朱海涛

教授 博士生导师 硕士生导师

教师拼音名称:zhuhaitao

所属院系:材料科学与工程学院

邮箱 :

崂山校区 - 山东省青岛市松岭路99号   
四方校区 - 山东省青岛市郑州路53号   
中德国际合作区(中德校区) - 山东省青岛市西海岸新区团结路3698号
高密校区 - 山东省高密市杏坛西街1号   
济南校区 - 山东省济南市文化东路80号©2015 青岛科技大学    
管理员邮箱:master@qust.edu.cn
访问量: 手机版 English 青岛科技大学

最后更新时间: ..