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Waste heat recovery in an intercooled gas turbine system: Exergo-economic analysis, triple objective optimization, and optimum state selection

机译:中间冷却燃气轮机系统中的废热回收:Exergo-经济分析,三重客观优化,最佳状态选择

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摘要

The development of heat and power generation systems has a major step towards sustainable development, reducing fossil energy consumption and reducing environmental pollution. Integrated energy systems are considered widely due to their high efficiency. In the present paper, an intercooled gas turbine system is developed to achieve a system with high thermal efficiency as well as better economic performance and cleaner production. The main goals of the suggested system is improvement of thermodynamic and exergo-economic performance beside multi-criteria optimization, which lead to improve the system sustainability. The intercooled gas turbine in the current work integrated with hot water system and thermoelectric generator unit to develop an advanced combined heat and power system. A comprehensive energy, exergy, and exergo-economic analyses are employed to price assessment of the new introduced system. A comparative analysis with conventional intercooled gas turbine system is presented. The results of thermodynamic modeling indicate that an improvement about 613.3 kW, 8.21 kW, and 12.3 kW can be obtained in the gas turbine, Kalina cycle, and regenerative organic Rankine cycle subsystems. The results of energy and exergy analysis show that the values of both energy and exergy efficiencies for all subsystems experience increment in the new introduced. Parametric analysis based on thermodynamic and exergo-economic criteria is done and a triple objective optimization conducted to determine the best system configurations. The Technique for Order of Preference by Similarity to Ideal Solution is employed to choose the final optimal state of the system. The result of optimum selection among non-dominant solutions suggested by Pareto points indicates that the energy efficiency, total exergy destruction rate and electricity cost rate are 53.91%, 2392.01 kW, and 52.29 $/h. (c) 2020 Elsevier Ltd. All rights reserved.
机译:发电系统的发展具有可持续发展的重大步骤,减少化石能耗和减少环境污染。由于其高效率,集成能量系统被广泛被认为是广泛的。在本文中,开发了一种间电压燃气轮机系统,实现了具有高热效率的系统以及更好的经济性能和清洁生产。建议系统的主要目标是在多标准优化途中改善热力学和exergo - 经济性能,从而提高了系统可持续性。中电冷却燃气轮机在当前工作中,与热水系统和热电发电机单元集成,开发先进的组合热电系统。综合能源,暴风和eRERGO-经济分析将用于价格评估新引入的系统。提出了一种与传统的间电压燃气轮机系统的对比分析。热力学建模的结果表明,在燃气轮机,Kalina循环和再生有机朗肯循环子系统中可以获得约613.3kW,8.21kW和12.3kW的改进。能量和漏洞分析结果表明,所有子系统的能量和漏洞效率的价值在新介绍中的趋势体验。完成了基于热力学和exergo - 经济标准的参数分析,并进行了三重客观优化以确定最佳系统配置。使用与理想解决方案相似性的优先顺序的技术来选择系统的最终最佳状态。帕累托点建议的非主导解决方案中最佳选择的结果表明,能效,总出境损失率和电力成本率为53.91%,2392.01千瓦,52.29美元/小时。 (c)2020 elestvier有限公司保留所有权利。

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