首页> 外文期刊>Iranian Journal of Science and Technology, Transactions of Mechanical Engineering >Exergy Analysis and Optimization of Multi-effect Distillation with Thermal Vapor Compression System of Bandar Abbas Thermal Power Plant Using Genetic Algorithm
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Exergy Analysis and Optimization of Multi-effect Distillation with Thermal Vapor Compression System of Bandar Abbas Thermal Power Plant Using Genetic Algorithm

机译:基于遗传算法的阿巴斯电厂热蒸汽压缩系统多效精馏的火用分析与优化。

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Multi-effect distillation desalination system with thermal vapor compression is one of the systems of producing fresh water based on distillation desalination. This type of desalination system is one of the most appropriate and economic types of desalination systems for low to high capacities of seawater and brackish water in which evaporation and distillation have occurred in a vacuum and in temperature below 70 degrees C. This research provides a mathematical model in the steady-state conditions for multi-effect distillation desalination system with thermal vapor compression in Bandar Abbas thermal power plant in south of Iran. The genetic algorithm is used for maximizing the produced fresh water and minimizing total exergy destruction rate. Exergy analysis shows that the thermo-compressor and effects are the main sources of exergy destruction in the system (more than 80%). The actual operating data in summer and winter were used for the exergy destruction study. The results show that the exergy destruction in winter is more than summer. Parametric analysis for studying the effects of key parameters shows that increasing the top brine temperature leads to increase in the total exergy destruction of the system. The optimization of the system with two-target genetic algorithm causes distillate production to increase by 16.62%, and the total exergy destruction rate decreases by 3.58%.
机译:具有热蒸汽压缩的多效蒸馏淡化系统是基于蒸馏淡化生产淡水的系统之一。这种类型的海水淡化系统是最合适,最经济的海水淡化系统之一,适用于从低到高容量的海水和微咸水,在真空和低于70摄氏度的温度下已经发生了蒸发和蒸馏。伊朗南部阿巴斯港热电厂采用热蒸汽压缩的多效蒸馏淡化系统稳态条件下的模型。遗传算法用于最大化生产的淡水和最小化总火用破坏率。火用分析表明,热压缩机及其影响是系统中火用破坏的主要来源(超过80%)。夏季和冬季的实际运行数据用于本能破坏研究。结果表明,冬季的火用破坏大于夏季。用于研究关键参数影响的参数分析表明,升高最高盐水温度会导致系统的总火用破坏增加。采用两目标遗传算法对系统进行优化,使馏出物产量提高了16.62%,总火用破坏率降低了3.58%。

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