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Exergy Analysis for Brayton and Inverse Brayton Cycles with Steam Injection

机译:蒸汽注入布雷顿和布雷顿反循环的火用分析

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Global economic and social development has led to the growth in demand for electrical power. Gas turbines play an essential role in many societies, and as the requirements for power generation increase, the power output and thermal efficiency of gas turbines must also increase. This paper presents one of the ways to improve the performance of the gas turbine with a study of exergy analysis of combined Brayton and inverse Brayton cycles with steam injected into the combustion chamber. The effect of variation of operating conditions (compression ratio and ambient temperature) on the performance of gas turbine (thermal efficiency, power) were investigated, the results were compared with the same cycle, but without injection with the analytical formulae of exergy and exergy destruction. The programming of performance model for gas turbine was developed utilizing the commercially available software IPSEpro. The analysis shows that the highest exergy destruction occurs in the combustion chamber. In addition, the performance has been improved by using steam injection by 11% in efficiency and 57% in power output and decrease linearly with the increase of the ambient temperature. However, steam injection increases the specific fuel consumption and heat rate. Thus, the thermodynamic parameters on cycle performance are economically feasible and beneficial for the gas turbine operations.
机译:全球经济和社会发展导致对电力需求的增长。燃气轮机在许多社会中起着至关重要的作用,并且随着发电需求的增加,燃气轮机的功率输出和热效率也必须提高。本文通过对将布雷顿逆循环和布雷顿逆循环联合进行的火用分析进行了研究,提出了一种改进燃气轮机性能的方法,其中蒸汽注入燃烧室。研究了工况变化(压缩比和环境温度)对燃气轮机性能(热效率,功率)的影响,将结果与相同的循环进行了比较,但没有注入火用和火用破坏的分析公式。燃气轮机性能模型的编程是使用商用软件IPSEpro开发的。分析表明,最高的火用破坏发生在燃烧室中。另外,通过使用蒸汽注入,性能提高了11%,功率输出提高了57%,并且随着环境温度的升高呈线性下降。然而,蒸汽喷射增加了单位燃料消耗和热率。因此,关于循环性能的热力学参数在经济上是可行的,并且对于燃气轮机的运行是有益的。

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