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Modeling of a conventional solar still with draft and humidification-dehumidification process

机译:用抽风和加湿-除湿过程对常规太阳能蒸馏器进行建模

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A conventional solar still equipped with a self sustainable humidification-dehumidification open air flow stream to enhance the system productivity was investigated. This modification maintained higher temperature difference between the saline water to be evaporated and the condensing surface. Accordingly, higher driving force for the evaporation-condensation processes was provided. This was achieved by insulating the condensing surface from the incoming radiation and by the continuous removal of the latent heat of condensation by the cooling water. Water production of 2.34 L/m2.day was obtained by the modified solar still. Thermodynamic relations and mass and energy balances were utilized in modeling the operation of the system. The accuracy of the experimental results was validated against a linear model. Variations in the enormous parameters that influence solar studies limited the value of the coefficient of determination for the lumped efficiency of the system at 0.74. Factors that affected the still performance were highlighted, and recommendations for future improvements were made.
机译:研究了配备有可持续的加湿-除湿露天气流以提高系统生产率的常规太阳能蒸馏器。这种修改使要蒸发的盐水和冷凝表面之间保持较高的温差。因此,提供了用于蒸发-冷凝过程的更高的驱动力。这是通过使冷凝表面与入射辐射隔离以及通过冷却水连续去除冷凝潜热来实现的。改性后的太阳能蒸馏水的产水量为2.34 L / m 2 .day。利用热力学关系以及质量和能量平衡对系统的运行进行建模。实验结果的准确性已针对线性模型进行了验证。影响太阳研究的巨大参数的变化将系统集总效率的确定系数值限制在0.74。强调了影响静止性能的因素,并提出了未来改进的建议。

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