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Design and optimization of an energy hub based on combined cycle power plant to improve economic and exergy objectives

机译:基于组合循环发电厂改善经济和能力目标的能量枢纽的设计与优化

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This paper uses the energy hub concept to meet the water, heat and electricity demand of a power plant in the Qeshm island in south of Iran. Given the power plant’s high potential for waste heat recovery and some scenarios were considered using the hub energy concept based on energy, exergy, environmental and economic analyzes in terms of meeting the demands of the hub and purchasing/selling energy carriers including electricity, heating, freshwater as well as its production using gas turbine, steam turbine, boiler, Reverse Osmosis (RO) and Multi-Effect Desalination (MED) system. Energy hubs are optimized based on the Genetic Algorithm (GA) with the goal of supplying demand, as well as reducing costs and pollutants and increasing the exergy efficiency which ultimately will be selected using the concept of an energy hub at its optimal capacity. By comparing the two energy supplying systems of the current case study and optimal energy hub, results showed that the Total Annual Cost (TAC) level decreased by about 257904 $/year and exergy efficiency increased by 34.31%. CO2 emission will also decrease by about 471 tons/year.
机译:本文采用能源中心概念来满足伊朗南部Qeshm岛的电厂的水,热量和电力需求。鉴于发电厂的浪费高潜力以及在满足集线器的需求和包括电力,加热,供暖,加热,供暖的需求方面,使用枢纽能源概念考虑了一些情况,使用集线器能量概念考虑了枢纽能源概念。淡水以及使用燃气轮机,蒸汽轮机,锅炉,反渗透(RO)和多效脱盐(MED)系统的生产。能量集线器基于遗传算法(GA)通过提供需求的目标,以及降低成本和污染物,并提高最终将使用能量枢纽的概念以其最佳能力选择的高度效率。通过比较当前案例研究和最佳能量枢纽的两个能量供应系统,结果表明,年度成本(TAC)水平降低约257904美元,高度效率增加了34.31%。二氧化碳排放也将减少约471吨/年。

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