Principles of resource-process modeling of territorial communities combined energy supply in the climate change prevention context

Viktor Kaplun
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Abstract

The research is devoted to the theoretical and practical substantiation of the principles of formation of systems of combined energy supply with heterogeneous sources to increase the energy efficiency of territorial communities in the conditions of climate change resistance. New approaches and structural models for the formation of local microenergy systems are proposed, which will encourage territorial communities to a new type of activity related to their own energy generation based on the use of local types of fuels and renewable energy sources. The principles of building such local energy supply systems, in general, consist in the rational distribution of resources (renewable sources, sources of combined energy generation using biofuels, energy from external networks) and coordination of the processes of generation, transmission, accumulation, distribution and consumption of energy within the boundaries of a separate territorial community by creating its own high-tech infrastructure assets. The formation of the energy balance in the medium and long term is proposed to be carried out on the basis of a resource-process analysis of the operation of local networks by finding the optimal use of local types of biofuels and renewable sources in the combined generation of electricity and heat, taking into account their current value. The cost of energy for the end consumer is determined by differentiated tariffs of energy supply companies and the use of several heterogeneous sources that participate in the process of decentralized energy production. Mathematical relations are obtained for calculating the values of the time intervals of the execution of a set of parallel processes that arise during the interaction of competing sources of distributed generation with end consumers and establishing the regularities of the formation of the energy balance a micro energy system. The proposed method can be a tool for finding optimal energy efficiency management scenarios of facilities with local energy supply, using operational redistribution of energy flows in the system of combined energy generation and forecasting current costs for energy supply in calculation periods. Such a concept can be a theoretical basis for the formation of principles of energy independence of territorial communities. Keywords: territorial community, combined-heat-and-power-system, renewable energy sources, biofuel, energy balances.
气候变化预防背景下的地域社区综合能源供应资源过程建模原则
该研究致力于从理论和实践上论证在抵御气候变化的条件下,为提高地方社区的能源效率而建立异质能源联合供应系统的原则。本文提出了建立地方微型能源系统的新方法和结构模式,这将鼓励地方社区在使用地方燃料和可再生能源的基础上,开展与自身能源生产有关的新型活动。一般来说,建立这种地方能源供应系统的原则包括合理分配资源(可再生能源、使用生物燃料的联合能源发电资源、来自外部网络的能源),以及通过建立自己的高科技基础设施资产,在一个独立的地区社区范围内协调能源的生产、传输、积累、分配和消费过程。建议在对本地网络的运行进行资源-过程分析的基础上,考虑到本地生物燃料和可再生能源的当前价值,在联合发电和供热过程中对其进行最佳利用,从而形成中长期的能源平衡。最终消费者的能源成本由能源供应公司的差别电价以及参与分散能源生产过程的多种不同能源的使用情况决定。通过数学关系,可以计算出一组并行过程的执行时间间隔值,这些并行过程是在相互竞争的分布式发电源与终端消费者相互作用的过程中产生的,并确定了微型能源系统能源平衡形成的规律性。所提出的方法可作为一种工具,用于寻找本地能源供应设施的最佳能效管理方案,利用联合能源发电系统中能源流的运行再分配,并预测计算期间能源供应的当前成本。这一概念可作为形成地域社区能源独立原则的理论基础。关键词:地域社区、热电联产系统、可再生能源、生物燃料、能源平衡。
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