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Boiler Parametric Study to Decrease Irreversibility

机译:锅炉参数化研究以减少不可逆性

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In this paper, the useful concept of energy and exergy utilization is analyzed, and applied to the boiler system. Energy and exergy flows in a boiler have been shown in this paper. The energy and exergy efficiencies have been determined as well. In a boiler, the energy and exergy efficiencies are found to be 89.21% and 45.48%, respectively. A boiler energy and exergy efficiencies are compared with others work as well. It has been found that the combustion chamber is the major contributor for exergy destruction followed by heat exchanger of a boiler system. Furthermore, Modifications are examined to increase gas-fired steam power plant efficiency by reducing irreversibilities in the steam generator, including Decreasing the fraction of excess combustion air, and/or the stack-gas temperature. Overall-plant energy and exergy efficiencies both increase by 0.19%, 0.37% respectively when the fraction of excess combustion air decreases from 0.4 to 0.15, and by 0.84%, 2.3% when the stack-gas temperature decreases from 137°C to 90°C
机译:本文分析了能源利用和火用的有用概念,并将其应用于锅炉系统。本文显示了锅炉中的能量和火用流。能量和火用效率也已确定。在锅炉中,能源效率和火用效率分别为89.21%和45.48%。锅炉的能量和火用效率也与其他工作进行了比较。已经发现,燃烧室是火用能破坏的主要贡献者,其次是锅炉系统的热交换器。此外,还研究了通过减少蒸汽发生器中的不可逆性(包括降低过量燃烧空气的比例和/或烟囱气体温度)来提高燃气蒸汽发电厂效率的改进措施。当过量燃烧空气的比例从0.4降低到0.15时,工厂的总能源效率和火用效率分别提高0.19%和0.37%;当烟囱气体温度从137°C降低到90°时,工厂的总能源效率和火用效率分别提高0.84%,2.3% C

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