改进发电厂技术,提高自主用户使用地热资源的能源效率

Q2 Engineering Energy Harvesting and Systems Pub Date : 2023-10-30 DOI:10.1515/ehs-2023-0082
Seitzhan Orynbayev, Amanzhol Tokmoldayev, Nazym Abdlakhatova, Aizhan Zhanpeisova, Issakul Tumanov
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引用次数: 0

摘要

摘要:这项研究的意义是强调了二元电厂在当代世界的巨大潜力。这些植物在为家庭供暖、促进温室供暖和支持空调系统方面发挥着关键作用。这项研究的目的是提出关于消除改进和实施地热发电厂过程中的错误的建议,并分析它们在发电期间的功能。在使用的方法中,应注意分析方法、分类、功能、统计、综合等。指出了哈萨克斯坦地热发电厂的特点,分析了它们之间的差异,分析了发电厂在运行过程中为提高消费者的能源效率而产生的错误和错误的原因。确定了发展中的不确定性及其对地热发电厂功能的影响。其实用价值在于将识别的结果应用于实际,解决了双线电厂开发实施中的误差,提高了消费者的能源效率,提高了该地区地热电厂使用的可靠性,考虑了各种因素,有助于为该机制的合理使用提供建议。
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Improving power plant technology to increase energy efficiency of autonomous consumers using geothermal sources
Abstract The significance of this study is underscored by the immense potential of binary power plants in the contemporary world. These plants have a pivotal role to play in supplying heat to homes, facilitating greenhouse heating, and supporting air conditioning systems. The purpose of the study is to provide recommendations on eliminating errors in the processes of improving and implementing geothermal plants and analysing their functioning during electricity generation. The analytical method, classification, functional, statistical, synthesis, and others should be noted among the methods used. The features of geothermal plants in Kazakhstan were noted, their differences were analysed, and errors that are made during the operation of power plants to increase the energy efficiency of consumers and the causes of errors were analysed. Uncertainties in the development and their impact on the functioning of geothermal power plants were identified. The practical value lies in the application of the identified results, solving errors in the development and implementation of a binary power plant to improve the energy efficiency of consumers, the reliability of the use of geothermal plants in the region, considering various factors, which will help provide recommendations for the appropriate use of the mechanism.
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来源期刊
Energy Harvesting and Systems
Energy Harvesting and Systems Energy-Energy Engineering and Power Technology
CiteScore
2.00
自引率
0.00%
发文量
31
期刊最新文献
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