Energy and Exergy Analysis of a Coal Fired Power Plant

Sumit Kumar, Dileep Kumar, R. Memon, Majid Ali Wassan, S. A. Mir
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引用次数: 6

Abstract

In this paper, energy and exergy analysis has been conducted on a subcritical coal fired power plant of Wisconsin Power and Light Company, USA to investigate the steam cycle energy and exergy efficiency. The cycle is analyzed by developing a mathematical model using its operating and design parameters. The analysis is performed using EES (Engineering Equation Solver). The energy analysis shows that major share of energy loss occurs in condenser i.e. 72% of total cycle energy loss, whereas, exergy analysis shows that 83.09% total exergy destruction of cycle occurs in boiler.Furthermore, the simulation results are compared with actual with an absolute error of 3.1%. Additionally, the parametric study is performed to examine the effects of various operating parameters such as main steam pressure and temperature, condenser pressure, terminal and drain cooler temperature difference on net power output, energy andexergy efficiency of cycle. The parametric study shows that the plant has maximum energy and exergy efficiencies at steam pressure of 2500psi, condenser pressure of 1.0psi and main steam temperature of 1100oF. Furthermore, these parameters do not seem to change energy and exergy efficiencies significantly.
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燃煤电厂能量与火用分析
本文对美国威斯康辛电力和照明公司的亚临界燃煤电厂进行了能量和火用分析,研究了蒸汽循环的能量和火用效率。利用其运行参数和设计参数建立数学模型,对循环进行了分析。分析使用EES(工程方程求解器)进行。能量分析表明,主要的能量损失发生在冷凝器,占循环总能量损失的72%,而火用分析表明,83.09%的循环总火用破坏发生在锅炉。仿真结果与实际结果进行了比较,绝对误差为3.1%。此外,还进行了参数化研究,考察了主蒸汽压力和温度、冷凝器压力、末端和排冷器温差等各种运行参数对循环净输出功率、能量和能效比的影响。参数化研究表明,当蒸汽压力为2500psi,冷凝器压力为1.0psi,主蒸汽温度为1100oF时,该装置具有最大的能量和火用效率。此外,这些参数似乎不会显著改变能源和火用效率。
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