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Exergoeconomic analysis and performance assessment of selected gas turbine power plants

机译:选定燃气轮机发电厂的能效经济分析和性能评估

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摘要

In this study, exergoeconomic analysis and performance evaluation of selected gas turbine power plants in Nigeria were carried out. The study was conducted using operating data obtained from the power plants to determine the exergy efficiency, exergy destruction, unit cost of electricity and cost of exergy destruction of the major components of a gas turbine engine in the selected power plants. The results of exergy analysis confirmed that the combustion chamber is the most exergy destructive component compared to other cycle components as expected. The total efficiency defects and overall exergetic efficiency of the selected power plants vary from 38.64 to 69.33% and 15.66 to 30.72% respectively. The exergy analysis further shows that the exergy improvement potential of the selected plants varies from 54.04 MW to 159.88 MW. The component with the highest exergy improvement potential is the combustion chamber and its value varies from 30.21 MW to 88.86 MW. The results of exergoeconomic analysis show that the combustion chamber has the greatest cost of exergy destruction compared to other components. Increasing the gas turbine inlet temperature (GTIT), both the exergy destruction and the cost of exergy destruction of this component were found to decrease. The results of this study revealed that an increase in the GTIT' of about 200 K can lead to a reduction of about 29% in the cost of exergy destruction. From exergy costing analysis, the unit cost of electricity produced in the selected power plants varies from cents 1.99 /kWh (N3.16 /kWh) to cents 5.65 /kWh (N8.98 /kWh).
机译:在这项研究中,对尼日利亚选定的燃气轮机发电厂进行了能效经济分析和性能评估。这项研究是使用从发电厂获得的运行数据进行的,以确定选定发电厂中燃气涡轮发动机主要部件的火用效率,火用破坏,电力单位成本和火用破坏成本。火用分析的结果证实,与预期的其他循环组件相比,燃烧室是最具火用破坏力的组件。所选电厂的总效率缺陷和总体能源效率分别为38.64%至69.33%和15.66%至30.72%。火用分析进一步表明,所选植物的火用改进潜力从54.04 MW到159.88 MW不等。火用改善潜力最大的组件是燃烧室,其值从30.21 MW到88.86 MW不等。用能经济学分析的结果表明,与其他组件相比,燃烧室的能干破坏成本最高。燃气轮机进口温度(GTIT)的增加,发现该组件的火用破坏和火用破坏成本均降低了。这项研究的结果表明,GTIT'的增加约200 K可以使火用破坏的成本降低约29%。根据火用成本分析,选定电厂的单位发电成本从1.99美分/ kWh(N3.16 / kWh)到5.65美分/ kWh(N8.98 / kWh)不等。

著录项

  • 来源
    《Military operations research》 |2015年第3期|283-300|共18页
  • 作者单位

    Mechanical Engineering Department, Covenant University, Ota 999062, Nigeria;

    Mechanical Engineering Department, Obafemi Awolowo University, Ile Ife 999062, Nigeria;

    Chemical Engineering Department, Covenant University, Ota 999062, Nigeria;

    Institute for Turbulence-Noise-Vibration Interaction and Control, Shenzhen Graduate School, Harbin Institute of Technology, Shenzhen 518000, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Exergy; Exergo-economic; Gas turbine; GTIT; Exergy cost; Electricity;

    机译:火用;能动经济;燃气轮机;GTIT;火用成本;电力;

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