首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Multi-objective thermoeconomic optimization of coupling MSF desalination with PWR nuclear power plant through evolutionary algorithms
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Multi-objective thermoeconomic optimization of coupling MSF desalination with PWR nuclear power plant through evolutionary algorithms

机译:MSF海水淡化与压水堆核电厂耦合的多目标热经济优化算法

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This paper deals with the application of an evolutionary algorithm to multi-objective thermoeconomic optimization of coupling a multi stage flash desalination (MSF) plant with a pressurized water reactor (PWR) nuclear power plant. The thermodynamic simulation of this initial PWR plant has been performed in a Thermoflex simulator. An Excel add-in called Thermoflex Link has been developed to calculate the exergy of each stream from Thermoflex simulation results. Meanwhile, a computer code has been developed for thermoeconomic and improved combined pinch-exergy analysis in Matlab environment Both the design configuration (feed water heater structure) and the process variables are optimized simultaneously. The optimization algorithm can choose among several design options included in a superstructure of the feed water heater in dual purpose plant. For the assumptions and simplifications made in this study, a 3000 MW (thermal) PWR power plant such as the Bushehr power plant has been considered. A detailed exergy and exergoeconomic analysis of selected final optimal design identifies the magnitude, location and causes of the thermodynamic inefficiencies. Improved combined pinch and exergy analysis has been applied to display the system information graphically for one to visualize the performance of the system in the initial and final case.
机译:本文将进化算法应用于多级闪蒸脱盐(MSF)电厂与压水堆(PWR)核电厂的多目标热经济学优化中。该初始压水堆装置的热力学模拟已在Thermoflex仿真器中进行。已经开发了一个名为Thermoflex Link的Excel插件,可以根据Thermoflex仿真结果计算出每个流的火用度。同时,已经开发了用于热经济性的计算机代码,并在Matlab环境中改进了组合式捏合能值分析,同时优化了设计配置(给水加热器结构)和过程变量。优化算法可以在两用工厂的给水加热器的上部结构中包括的几种设计选项中进行选择。对于本研究中的假设和简化,已经考虑了3000兆瓦(热)压水堆发电厂,例如布什尔发电厂。对选定的最终最佳设计的详细的火用和能效经济分析确定了热力学效率低下的程度,位置和原因。改进的捏合和火用分析相结合已被应用来以图形方式显示系统信息,以便在初始和最终情况下可视化系统的性能。

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