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Evaluation of electricity generation subsystem of power-to-gas-to-power unit using gas expander and heat recovery steam generator

机译:使用气体扩展器和热回收蒸汽发生器评估电力到电力电机电力电机子系统的评价

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摘要

Power-to-hydrogen technology allows the effective use of electricity produced during the energy demand valleys, mainly in stochastic renewable energy sources. The dynamics of implementing such systems in the economy is correlated with the development of technologies enabling safe use of hydrogen. Currently, planning investments in power-to-hydrogen requires considering the risks associated with the possibility of reduced hydrogen demand. A way of protection against permanent or periodic reduction in the demand for hydrogen may be investments in electricity generation systems, which, thanks to the use of by-product of the electrolysis process - oxygen, can allow using of not only hydrogen but also natural gas. This paper discusses the thermodynamic and economic study of a hydrogen-to-power system using methanation and oxy-combustion combined cycle. The thermodynamic calculations focus on analysis of heat recovery steam generator (HRSG) structures and determining the energy efficiency of the system. The obtained energy storage efficiency are in the range of 16.29-24.95%. Within economic considerations, an electricity generation unit consisting of methanation and single-pressure HRSG systems cooperating with 100 MW hydrogen generators unit is considered. Sensitivity analyzes are performed and the value of investment outlays in hydrogen production unit and the price of electricity are decision variables.
机译:电力至氢技术允许在能源需求谷期间有效地使用电力,主要是随机可再生能源。在经济中实施此类系统的动态与能够安全使用氢的技术的发展相关。目前,考虑到氢气需求减少的可能性,规划氢气对氢的投资需要。一种防止氢气需求的永久性或定期减少的方法可能是发电系统的投资,因为使用电解过程 - 氧气的副产品,可以允许使用氢气,而且可以使用天然气。本文讨论了使用甲烷化和氧燃烧组合循环的氢气系统的热力学和经济研究。热力学计算侧重于热回收蒸汽发生器(HRSG)结构的分析并确定系统的能效。所获得的储能效率在16.29-24.95%的范围内。在经济考虑范围内,考虑由与100MW氢发电机单元配合的甲烷化和单压HRSG系统组成的发电单元。进行敏感性分析,氢生产单元中的投资支出价值和电力价格是决策变量。

著录项

  • 来源
    《Energy》 |2020年第1期|118600.1-118600.12|共12页
  • 作者单位

    Silesian University of Technology Faculty of Environmental Engineering and Energy Department of Power Engineering and Turbomachinery Konarskiego 18 44-100 Gliwice Poland;

    Silesian University of Technology Faculty of Environmental Engineering and Energy Department of Power Engineering and Turbomachinery Konarskiego 18 44-100 Gliwice Poland;

    Silesian University of Technology Faculty of Environmental Engineering and Energy Department of Power Engineering and Turbomachinery Konarskiego 18 44-100 Gliwice Poland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Energy storage; Power-to-Cas; Heat recovery steam generator; SNC; Techno-economic analysis;

    机译:储能;电力到CA;热回收蒸汽发生器;SNC;技术经济分析;

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