COMBINED ENERGY SYSTEMS BASED ON RENEWABLE ENERGY SOURCES

IF 0.6 Q4 ENGINEERING, MECHANICAL MM Science Journal Pub Date : 2023-12-13 DOI:10.17973/mmsj.2023_12_2023131
Layth Mohammed Abd Ali, M. N. Al-Maliki, Rashid Hejeejo, H. A. Issa, B. Yakimovich, Sergey E. Shcheklein, V. Velkin, V. Kuvshinov
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Abstract

Ensuring the quality of energy supply to remote regions is relevant for grid companies and the state. One of the solutions to this problem is the use of renewable energy sources to generate electrical energy. Given this, the article considers an integrated approach to designing combined autonomous energy systems of an individual residential building based on renewable energy sources with the complete replacement of traditional energy carriers. In addition to the combined power system, the proposed solution implies using an insulated facade of the building, which will reduce heat loss by 1.5 times, compared with an un-insulated building. to increase the reliability of the energy supply, the project provides for a wind power plant, a backup diesel generator station and a battery pack with an inverter. Estimated calculations have shown that the probability of failure of the power system of this configuration is 3%. The conducted ecological and economic justification of the use of an autonomous combined power system allows us to conclude that 2.1 tons of conventional fuel per year is saved and the payback of the energy supply system for a period of up to 8 years.
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基于可再生能源的联合能源系统
确保偏远地区的能源供应质量对电网公司和国家都很重要。利用可再生能源产生电能是解决这一问题的方法之一。有鉴于此,文章考虑采用一种综合方法来设计基于可再生能源的独立住宅楼联合自主能源系统,以完全取代传统的能源载体。为提高能源供应的可靠性,该项目配备了一个风力发电厂、一个备用柴油发电机站和一个带逆变器的电池组。估算表明,这种配置的电力系统发生故障的概率为 3%。通过对使用自主联合发电系统进行生态和经济方面的论证,我们得出结论,每年可节省 2.1 吨传统燃料,能源供应系统的投资回报期长达 8 年。
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来源期刊
MM Science Journal
MM Science Journal ENGINEERING, MECHANICAL-
CiteScore
1.30
自引率
42.90%
发文量
96
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