Evaluation of the efficiency of energy complexes with the production of hydrogen, oxygen, heat and electricity

Yu. E. Nikolaev, M. A. Aidarov
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Abstract

RELEVANCE of the research. The global trend of decarbonization of the national economies of the leading countries of the world implies an increase in energy production due to renewable energy sources and hydrogen. The most environmentally friendly way to produce hydrogen is the electrolysis of water using wind and solar energy. Combined production of thermal, electric energy, hydrogen and oxygen carried out by energy complexes ensures reduction of harmful emissions and increase of their economic efficiency.METHODS. In solving this problem, the method of computational experiment was used, taking into account the geographical and climatic data of the location of the energy complex, as well as the nature of consumption of thermal, electric energy and hydrogen. The calculation was implemented in Visual Basic.RESULTS. The article describes the relevance of the topic, examines the influence of the installed capacity of photovoltaic converters, geographical, climatic and cost characteristics on the efficiency of the energy complex.CONCLUSION. The structure is determined and a schematic diagram of a multi-purpose energy complex is proposed. A methodology for calculating quantitative and economic indicators of the installation has been developed. In the course of the study, it was noted that there is an optimal value of the installed capacity of a photovoltaic installation, further increase of which is inexpedient from an economic point of view. It was also determined that the combination of hydrogen gas stations based on solar installations with traditional sources of energy supply can reduce the cost of hydrogen produced, which in the future may be a solution to the problem of creating a hydrogen infrastructure.
评估生产氢气、氧气、热能和电力的能源综合体的效率
研究的意义。世界主要国家国民经济的去碳化是全球趋势,这意味着可再生能源和氢气将增加能源生产。最环保的制氢方法是利用风能和太阳能电解水。能源综合体进行热能、电能、氢气和氧气的联合生产,可确保减少有害气体排放,提高经济效益。 在解决这个问题时,使用了计算实验方法,考虑到了能源综合体所在地的地理和气候数据,以及热能、电能和氢气的消耗性质。计算在 Visual Basic 中实现。文章阐述了该主题的相关性,研究了光伏转换器装机容量、地理、气候和成本特征对能源综合体效率的影响。文章确定了多功能能源综合体的结构并提出了其示意图。制定了计算该装置定量和经济指标的方法。在研究过程中注意到,光伏装置的装机容量有一个最佳值,从经济角度看,进一步增加装机容量是不可取的。研究还确定,将基于太阳能装置的氢气站与传统能源供应相结合,可以降低氢气生产成本,这在未来可能成为建立氢气基础设施问题的一种解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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