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首页> 外文期刊>Journal of the air & waste management association >A Feasibility Study of a Predictive Emissions Monitoring System Applied to Taipower's Nanpu and Hsinta Power Plants
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A Feasibility Study of a Predictive Emissions Monitoring System Applied to Taipower's Nanpu and Hsinta Power Plants

机译:台电南浦和新塔发电厂预测排放监测系统的可行性研究

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摘要

The Hsinta and Nanpu Power Stations are located in southern Taiwan. The Hsinta Power Station consists of five combined-cycle gas turbines (CCGT), whereas the Nanpu Power Station consists of four. A project was undertaken to develop and deploy a predictive emissions monitoring system (PEMS) on CCGT unit 3 of Hsinta Power Station (HT-3) and CCGT unit 1 of Nanpu Power Station (NP-1) with the long-term goal of developing a universal model for this kind of power plant. After the first-year PEMS project at the Hsinta power plant, one goal of the second-year PEMS project was to set up a second PEMS at the Nanpu power plant and compare the PEM models applied the to two gas-fired combined cycle power generation units. Consequently, the second and third PEMS of Taiwan at CCGT HT-3 and NP-1 were finished. After comparing the differences among HT-1, HT-3, and NP-1 PEMS models, the pattern of model functionality indicated that this model could be applied to the other units of the same type and size. However, the PEMS function constant or parameter coefficients must be modified on a case-by-case basis. With regard to the PEMS model developed for HT-3, the relative accuracy (RA) of the 15-variable model with start-up mode is only 7.43% and met the criteria of draft PS-16. With regard to the PEMS model developed for NP-1, the RA of the 10-variable model with start-up mode was only 7.76% and also met the criteria of draft PS-16.
机译:新塔和南埔电站位于台湾南部。新塔电站由五台联合循环燃气轮机(CCGT)组成,而南浦电站由四台燃气轮机组成。长期开发目标是在新塔电站CCGT 3号机组(HT-3)和南浦电站CCGT 1号机组(NP-1)上开发和部署预测排放监测系统(PEMS)。这种发电厂的通用模型。在新塔电厂进行了第一年的PEMS项目之后,第二年的PEMS项目的目标是在南浦电厂建立第二个PEMS,并比较应用于两个燃气联合循环发电的PEM模型单位。因此,在CCGT HT-3和NP-1上完成了台湾第二和第三届PEMS。在比较了HT-1,HT-3和NP-1 PEMS模型之间的差异之后,模型功能的模式表明该模型可以应用于相同类型和大小的其他单元。但是,必须根据具体情况修改PEMS函数常数或参数系数。对于为HT-3开发的PEMS模型,具有启动模式的15变量模型的相对精度(RA)仅7.43%,并符合PS-16草案的标准。对于为NP-1开发的PEMS模型,具有启动模式的10变量模型的RA仅7.76%,还符合PS-16草案的标准。

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    Department of Environmental Engineering and Sustainable Environment Research Center, National Cheng Kung University, Tainan, Taiwan, Republic of China;

    rnDepartment of Environmental Engineering and Sustainable Environment Research Center, National Cheng Kung University, Tainan, Taiwan, Republic of China;

    rnNational Cheng Kung University, Department of Environmental Engineering, No. 1, University Road, Tainan 701, Taiwan, Republic of China;

    rnDepartment of Environmental Engineering and Sustainable Environment Research Center, National Cheng Kung University, Tainan, Taiwan, Republic of China;

    rnDepartment of Industrial Safety and Environmental Protection, Taiwan Power Company, Taipei, Taiwan, Republic of China;

    rnDepartment of Industrial Safety and Environmental Protection, Taiwan Power Company, Taipei, Taiwan, Republic of China;

    rnDepartment of Industrial Safety and Environmental Protection, Taiwan Power Company, Taipei, Taiwan, Republic of China;

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