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Exergy costing analysis and performance evaluation of selected gas turbine power plants

机译:选定燃气轮机电厂的火用成本分析和性能评估

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In this study, exergy costing analysis and performance evaluation of selected gas turbine power plants in Nigeria are carried out. The results of exergy analysis confirmed that the combustion chamber is the most exergy destructive component compared to other cycle components. The exergetic efficiency of the plants was found to depend significantly on a change in gas turbine inlet temperature (GTIT). The increase in exergetic efficiency with the increase in turbine inlet temperature is limited by turbine material temperature limit. This was observed from the plant efficiency defect curve. As the turbine inlet temperature increases, the plant efficiency defect decreases to minimum value at certain GTIT (1,200?K), after which it increases with GTIT. This shows degradation in performance of gas turbine plant at high turbine inlet temperature. Exergy costing analysis shows that the combustion chamber has the greatest cost of exergy destruction compared to other components. Increasing the GTIT, both the exergy destruction and the cost of exergy destruction of this component are found to decrease. Also, from exergy costing analysis, the unit cost of electricity produced in the 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火用成本分析和性能评估。火用分析的结果证实,与其他循环组件相比,燃烧室是最具火用破坏性的组件。发现植物的充分利用效率显着取决于燃气轮机入口温度(GTIT)的变化。透平效率随透平入口温度的增加而受到透平材料温度极限的限制。从工厂效率缺陷曲线可以看出这一点。随着涡轮机入口温度的升高,在某些GTIT(1200?K)时,设备效率缺陷降至最小值,此后随着GTIT升高。这表明在高涡轮入口温度下燃气涡轮设备的性能下降。火用成本分析表明,与其他组件相比,燃烧室的火用破坏成本最高。 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。同样,根据火用成本分析,发电厂的单位发电成本从1.99美分/千瓦时(N3.16 / kWh)到5.65美分/千瓦时(N8.98 / kWh)不等。

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