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Experimental and numerical study of stepped solar still integrated with a passive external condenser and its application

机译:阶梯式太阳能的实验和数值研究仍然与无源外部冷凝器集成及其应用

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摘要

Solar still is used widely to produce clean water from any brackish water. The efficiency of the still depends on the design of the still with respect to the prevailing local ambient conditions. A number of literature discussed about different designs of evaporator on improving the overall efficiency of the still but not on the condenser design. Hence, the present work focuses on the improvement in efficiency by providing a passive external condenser with a stepped design of evaporator. The passive external condenser has shown an increase in the overall efficiency of still by 10.6% in summer and 12.2% in winter. Higher performance was observed in winter than summer when the passive external condenser was added with stepped evaporator (integrated system) and found inverse for the stepped solar still without condenser. Heat transfer analysis was also made to determine the effectiveness of the external condenser in summer and winter. The correlations developed by Dunkle (in: Proceedings of the ASME International Heat Transfer Conference. Part V, International Developmental in Heat Transfer. University of Colorado, Boulder, Colorado, 1961), Hongfei et al. (Energy Convers Manag 43:2469-2478, 2002) and Tsilingiris (Sol Energy 83:420-431, 2009. 10.1016/j.solener.2008.09.007) were used to fit the experimental data obtained from the coupled system, and temperature correction factors were introduced along with the correlations to improve the predictions. The application of the external condenser as a heat source was also summarized.
机译:太阳仍然广泛用于生产任何咸水的清水。仍然取决于仍然相对于普遍的局部环境条件的设计。关于蒸发器的不同设计讨论了许多文献,提高了静止的整体效率,但不在冷凝器设计上。因此,本工作通过提供具有蒸发器的阶梯式设计的被动外部冷凝器来介绍效率的提高。无源外部冷凝器显示夏季仍然增加10.6%的总效率,冬季12.2%。在冬季,在阶梯式蒸发器(集成系统)中添加被动外部冷凝器时,冬季观察到更高的性能,并发现阶梯式太阳仍然没有冷凝器的逆时针。还制作了传热分析,以确定外部冷凝器在夏季和冬季的有效性。 Dunkle开发的相关性(在:Asme国际传递会议的诉讼程序。第五部分,传热的国际发展。科罗拉多大学,博尔德,科罗拉多州,1961年),Hongfei等。 (能源第43:2469-2478,2002)和Tsilingiris(Sol Energy 83:420-431,2009.1016 / J.Solener.2008.09.007)用于符合从耦合系统获得的实验数据和温度引入校正因子以及改善预测的相关性。还总结了外部冷凝器作为热源的应用。

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