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Multi-objective optimization of HRSG configurations on the steam power plant repowering specifications

机译:蒸汽发电厂重装技术指标的HRSG配置的多目标优化

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Repowering as a formerly-experienced method can be considered as a suitable solution in raising the quantity and quality of generated electricity. The full repowering can provide appropriate solutions for converting the status of existing steam power plants (SPP) to assemblies with acceptable generation quality and reach current world standard levels. In this study, due to the importance of Bandar Abbas steam power plant, in terms of positioning and the amount of generated electricity, full repowering is considered. After modeling and verifying the model, the results of modeling the desired states in performing repowering are presented. Optimization is performed using functions of exergy efficiency and cost of electricity generation, using genetic algorithm method. Finally, the obtained diagram (Pareto Curve) indicates the cost changes based on the exergy efficiency that are effective in deciding on and selecting the desired and appropriate investment state. The results of the multi-objective optimization of repowering with two single-pressure and double-pressure level Heat Recovery Steam Generators (HRSGs) indicate an increase in the exergy efficiency of the plant up to a level above 46%. (C) 2018 Elsevier Ltd. Ail rights reserved.
机译:作为以前的经验方法,重新供电可以被认为是提高发电量和质量的合适解决方案。完全重新供电可以为将现有蒸汽发电厂(SPP)的状态转换为具有可接受的发电质量并达到当前世界标准水平的组件提供适当的解决方案。在这项研究中,由于阿巴斯港蒸汽发电厂的重要性,在定位和发电量方面,考虑完全重新供电。在对模型进行建模和验证之后,提供了对执行重新通电中的所需状态进行建模的结果。利用遗传算法方法,利用火用效率和发电成本函数进行优化。最后,所获得的图表(帕累托曲线)指示了基于火用效率的成本变化,这些变化可有效地确定和选择所需的适当投资状态。使用两个单压力和双压力水平的热回收蒸汽发生器(HRSG)进行供电的多目标优化结果表明,设备的火用效率提高了46%以上。 (C)2018 Elsevier Ltd.版权所有。

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