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Experimental Study of a Humidification-Dehumidification Seawater Desalination System Combined with the Chimney

机译:加湿除湿海水淡化系统与烟囱结合的实验研究

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The solar humidification-dehumidification system is of high significance to the freshwater supply in remote areas. In the present study, a humidification-dehumidification seawater desalination system combined with the chimney is designed and experimentally evaluated. Main parameters influencing its freshwater productivity are analyzed. It is found from this study that the cooling tower is required to obtain long-term steady freshwater generation. Raising the temperature difference between the evaporation and condensation chambers would lead to the rise of the freshwater productivity. There is a turning wind speed, beyond which increasing the wind speed would lead to the decline of both the freshwater productivity and the thermal efficiency. The turning wind speed is relevant to the ambient humanity and the heating power. Decreasing the heat power would increase the turning wind speed. When the heating power is 4.9?kW, the highest freshwater productivity and the highest efficiency are 48?g/min and 32.14%, respectively.
机译:太阳加湿除湿系统对偏远地区的淡水供应具有很高的意义。在本研究中,设计和实验评估了一种加湿 - 除湿海水淡化系统与烟囱进行了实验评估。分析了影响其淡水生产率的主要参数。从该研究中发现,冷却塔需要获得长期稳定的淡水产生。提高蒸发和冷凝室之间的温差会导致淡水生产率的升高。有一个转向风速,超出风速的增加会导致淡水生产率和热效率的下降。转向风速与环境人性和加热功率相关。减少热力将增加转弯风速。当加热功率为4.9 kW时,最高的淡水生产率和最高效率分别为48Ω·克/分钟和32.14%。

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