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Modeling of a novel concentrated solar still enhanced with a porous evaporator and an internal condenser

机译:利用多孔蒸发器和内部冷凝器增强新型新型聚光太阳能的建模

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This paper introduces a new design of solar stills utilizing concentration, porous evaporation, internal condensation, and thermosephonic circulation. A steady-state mathematical model of the still has been proposed and simulated. The results of the study are presented in figures showing both efficiency and distillate rate. The simulation has shown that the decrease of wind speed and condenser temperature increases the efficiency of the still and distillation rates. The increase of ambient temperature increases the efficiency and the distillation rates. On the other hand, the increase of solar intensity increases the distillation rate; but the efficiency does not increase for entire intensity range. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文介绍了一种利用浓缩,多孔蒸发,内部凝结和热风循环的太阳能蒸馏器的新设计。已经提出并模拟了静态的静态数学模型。研究结果以数字显示,显示了效率和馏出率。仿真表明,风速和冷凝器温度的降低提高了蒸馏效率和蒸馏速率。环境温度的升高提高了效率和蒸馏速率。另一方面,太阳光强度的增加会提高蒸馏速率;但是效率不会在整个强度范围内增加。 (C)2015 Elsevier Ltd.保留所有权利。

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