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Theoretical and Experimental Simulation of Passive Vacuum Solar Flash Desalination

机译:被动真空太阳闪蒸淡化的理论和实验模拟

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摘要

Experimental and theoretical simulations of a novel sustainable desalination process have been carried out. The simulated process consists of pumping seawater through a solar heater before flashing it under vacuum in an elevated chamber. Vacuum is passively created and then maintained by the hydrostatic balance between pressure inside the elevated flash chamber and outdoor atmospheric pressure. Experimental simulations were carried out using a pilot unit built to depict the proposed desalination system. Theoretical simulations were performed using a detailed computer code employing fundamental physical and thermodynamic laws to describe the separation process, complimented by experimentally based correlations to estimate physical properties of the involved species and operational parameters of the proposed system setting it apart from previous empirical desalination models. Experimental and theoretical simulation results matched well, validating the developed model. Feasibility of the proposed system rapidly increased with flash temperature due to increased fresh water production and improved heat recovery. In addition, the proposed desalination system is naturally sustainable by solar radiation and gravity, making it very energy efficient.
机译:已经进行了新型可持续淡化工艺的实验和理论模拟。模拟过程包括将海水泵送通过太阳能加热器,然后将其在真空下在高架室内闪蒸。真空是被动产生的,然后通过升高的闪蒸室内的压力与室外大气压之间的静水压力平衡来维持真空。实验模拟是使用一个中试单元进行的,该中试单元用来描述所提出的脱盐系统。使用详细的计算机代码进行理论模拟,该代码使用基本的物理和热力学定律来描述分离过程,并辅之以基于实验的相关性来估算所涉及物种的物理特性和拟议系统的运行参数,从而使其与先前的经验淡化模型脱颖而出。实验和理论仿真结果吻合得很好,验证了开发的模型。由于增加了新鲜水的产生并改善了热回收,所提出系统的可行性随着闪蒸温度而迅速增加。此外,拟议的海水淡化系统在太阳辐射和重力的作用下自然可以承受,因此非常节能。

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