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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Analysis of a jet-pump-assisted vacuum desalination system using power plant waste heat
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Analysis of a jet-pump-assisted vacuum desalination system using power plant waste heat

机译:利用电厂余热的射流泵辅助真空脱盐系统分析

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摘要

With ever-increasing population and rapid growth of industrialization,there is a great demand for fresh water,especially for drinking,as natural resources are becoming limited.In view of the above,different desalination technologies are evolving with a thrust for utilization of renewable energy sources like solar energy,ocean thermal energy,geothermal energy and waste heat.Vacuum desalination is one such technology in which fresh water is produced from brackish water by evaporation and subsequent condensation.This desalination technique involves different processes like pressurization of brackish water by a pump,creation and maintenance of a vacuum using jet pumps,and evaporation of brackish water at reduced pressure using waste heat from a power plant such as water from condenser.In this paper an analysis of a vacuum desalination system is presented.By applying the mass,momentum and energy balances across the various components,the governing equations are obtained for the analysis.These equations are solved using simulation.Validation of the simulated performance is made with the experimental data available in the literature.The study was carried out by varying operational parameters such as evaporator temperature,condenser temperature,evaporator flow rate,condenser flow rate and chamber pressure.Yield of fresh water obtained from the system increased as condenser temperature decreased and the evaporator temperature increased.Further,the yield increased as chamber pressure decreased.
机译:随着人口的不断增加和工业化的快速发展,由于自然资源的日益匮乏,对淡水,尤其是饮用水的需求量很大。鉴于上述,各种淡化技术在不断发展,以利用可再生能源为动力真空淡化是一种这样的技术,其中通过蒸发和随后的冷凝从苦咸水中产生淡水。这种淡化技术涉及不同的过程,例如通过泵对苦咸水加压。 ,使用喷射泵进行真空的创建和维护,以及利用发电厂的余热(例如冷凝器中的水)在减压下将微咸水蒸发。本文对真空淡化系统进行了分析。各个组成部分的动量和能量平衡,得出控制方程进行分析。通过仿真求解这些方程式。利用文献中提供的实验数据对模拟性能进行验证。通过改变运行参数如蒸发器温度,冷凝器温度,蒸发器流量,冷凝器流量和箱内压力进行研究。从系统中获得的淡水产量随着冷凝器温度的降低和蒸发器温度的升高而增加。此外,产量随着室压的降低而增加。

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