热电联产(CHP)系统的火用分析(第一和第二定律分析)

A. G. Kaviri, M. Jafar, M. L. Tholudin, H. B. Avval
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引用次数: 7

摘要

发电系统的分析具有科学意义,也是有效利用能源所必需的。分析能量转换过程最常用的方法是热力学第一定律。因此,关键参数对输出功率和输出效率的影响非常重要。本文从热力学第一定律和热力学第二定律的角度考察了关键参数的影响。利用火用分析方法,从火用破坏的概念出发,确定蒸汽电厂循环的不利点。此外,利用高压蒸汽温度、再热温度和冷凝器压力的变化来评估效率和火用破坏的变化。对给水加热器效果的研究表明,当加热器数量增加到3个时,会导致第一和第二低效率的增加,但进一步增加则会产生相反的效果。结果表明,锅炉在电厂各部件中火用损失最大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Exergy analysis of a cogeneration heat and power (CHP) system (first and second law analysis)
The present study deals with an Analysis of power generation systems are of scientific interest and also essential for the efficient utilization of energy resources. The most commonly-used method for analysis of an energy-conversion process is the first law of thermodynamics. Therefore, the effect of key parameters on the out put power and efficiency are so important. In this paper, the effects of key parameters in both firs law and second law of thermodynamics point of view have performed. It was intended to determine unfavorable points from exergy destruction concept using exergy analysis for steam power plants cycle. Also, variation in efficiency and exergy destruction is evaluated using variations of temperature of high pressure steam, temperature of reheat, and condenser pressure. The study of the effect of feed-water heaters shows that increase in number of heaters up to 3 causes increase in both first and second low efficiency, but further increase has the reverse effect. The results show that boiler has the greatest exergy destruction among the power plant components.
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