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首页> 外文期刊>Energy & Environment >A DECISION SUPPORT SYSTEM TO DESIGN OPERATING STRATEGIES OF A POWER PLANT: ADEQUATE ELECTRICITY GENERATION AND ABATED EMISSIONS RELEASE
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A DECISION SUPPORT SYSTEM TO DESIGN OPERATING STRATEGIES OF A POWER PLANT: ADEQUATE ELECTRICITY GENERATION AND ABATED EMISSIONS RELEASE

机译:用于设计电厂运行策略的决策支持系统:足够的发电量和缓解的排放量

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摘要

In this study, a mathematical optimization model using Genetic Algorithms (GA) was developed and applied to search for operation modes of a power plant considering the adequate electricity generation for public demand and abated emissions release for the better air quality. Continuous Emissions Monitoring System (CEMS) equipment that reports hourly emissions (i.e., NO_x, SO_2, and CO) is used to prepare information of emissions regarding to the electricity production (GWh). Emission sources include sixteen stacks of eight units of power generation (four thermal and four combined cycle power plants) using natural gas and fuel oil. This technique shows the beneficial application of optimization model, GA code, CEMS, and power generation database in a unified framework of a Decision Support System (DSS). We find that the best operating strategy is to partially shutdown the medium power units and to abundantly operate the large units for the compensation of both emissions and electricity. By using this approach, the electricity generation can be sufficiently produced while emissions can be reduced by 1.83 % of NO_x/kWh, 10.90 % of SO_2/kWh, and 7.55% of CO/kWh.
机译:在这项研究中,开发了一种使用遗传算法(GA)的数学优化模型,并将其应用于搜索电厂的运行模式,其中考虑到有足够的发电量以满足公共需求,并减少了排放以提高空气质量。报告每小时排放量(即NO_x,SO_2和CO)的连续排放监测系统(CEMS)设备用于准备与发电量(GWh)有关的排放信息。排放源包括使用天然气和燃料油的八组发电设备的十六个烟囱(四个热电厂和四个联合循环发电厂)。该技术展示了在决策支持系统(DSS)的统一框架中优化模型,GA代码,CEMS和发电数据库的有益应用。我们发现最佳的操作策略是部分关闭中型功率单元并充分操作大型单元,以补偿排放和电力。通过使用这种方法,可以充分产生电力,同时可以将排放量减少1.83%NO_x / kWh,10.90%SO_2 / kWh和7.5%CO / kWh。

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