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Thermodynamic and Economic Analysis of a Gas-Turbine Combined Heat and Power Plant Considering Operational Flexibility

机译:考虑运行灵活性的燃气轮机组合热电厂的热力学和经济分析

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摘要

The operational flexibility is improved to decouple the thermoelectric limitation of the combined heat and power (CHP) system and meet the dynamic changes of heat and electrical loads in an affordable economic and thermodynamic cost. A gas-turbine CHP system combined with thermal energy storage of molten salt is proposed in this paper. The thermodynamic models of components are constructed and simulated in Ebsilon, and the indicators are defined to evaluate thermodynamic and economic performances and operational flexibility of the coupled CHP system. The thermodynamic analysis indicates that under the design conditions, when CHP operates without thermal energy storage, gas turbine has the largest energy and exergy losses due to the combustion irreversibility, accounting for 51.28 and 55.76% of total energy and exergy losses, respectively. In addition, the effects of thermal energy storage capacity on system performances are analyzed and discussed. The results indicate that when the capacity of the thermal energy storage increases from 0 to 2000 kWh, the primary energy ratio is decreased by 4.56%, the exergy efficiency only declines by 0.74%, and the economic revenue of the system is also reduced by 15.70%. But the adjustable ability of the heat and electricity is increased by 44.84%. The optimal thermal energy storage size of the CHP plant is comprehensively determined according to the integrated benefits of energy, economic, and operation flexibility.
机译:操作灵活性得到改善,以将组合热电(CHP)系统的热电限制分离,并以经济实惠的经济和热力学成本满足热电负荷的动态变化。本文提出了一种燃气轮机CHP系统与熔盐的热储能相结合。组件的热力学模型在EBSILON中构建和模拟,并定义指示器以评估耦合CHP系统的热力学和经济性能和操作灵活性。热力学分析表明,在设计条件下,当CHP在没有热能储存的情况下,由于燃烧不可逆转性,燃气轮机具有最大的能量和高度损失,分别占总能源和出境损失的51.28和55.76%。此外,分析并讨论了热能储存能力对系统性能的影响。结果表明,当热能储存的容量从0到2000千瓦时增加时,初级能量比率下降4.56%,但出境效率仅下降0.74%,系统的经济收入也降低了15.70 %。但热电和电力的可调节能力增加了44.84%。根据能量,经济和操作灵活性的综合效益,全面地确定CHP工厂的最佳热能存储尺寸。

著录项

  • 来源
    《Energy & fuels》 |2020年第11期|14902-14914|共13页
  • 作者

    Jin Wu; Jiangjiang Wang; Yi Liu;

  • 作者单位

    School of Energy Power and Mechanical Engineering North China Electric Power University;

    School of Energy Power and Mechanical Engineering North China Electric Power University;

    School of Energy Power and Mechanical Engineering North China Electric Power University;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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