用于沼气厂供电的各种设计的太阳能组件的现场测试

IF 8.3 2区 工程技术 Q1 CHEMISTRY, PHYSICAL
V.A. Panchenko , A.A. Kovalev , Yu.V. Litti
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引用次数: 0

摘要

本文介绍了光伏、光伏热和热设计太阳能组件的现场测试结果,这些测试旨在补偿沼气厂的能源成本。介绍了进行全尺寸测试的方法、所使用的设备和工具,以及用于各种设计的太阳能组件全尺寸测试的试验台。根据各种设计的太阳能组件的全尺寸试验结果,提出了提高开发和制造的太阳能组件效率的方向、改进其设计的方案以及制造技术。本文还根据已开发的各种设计和方向的太阳能组件,为其进一步研究提供了使用太阳能装置的建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Field testing of solar modules of various designs intended for power supply of the biogas plant
The article presents the results of field tests of solar modules of photovoltaic, photovoltaic thermal, and thermal design, which are intended to compensate for the energy costs of the biogas plant. The methodology for conducting full-scale tests, the equipment, and tools used, as well as an experimental stand for full-scale tests of solar modules of various designs are described. Based on the obtained results of full-scale tests of solar modules of various designs, directions for increasing the efficiency of the developed and manufactured solar modules, options for improving their designs, as well as manufacturing technologies are proposed. The article also provides recommendations for using a solar installation based on the developed solar modules of various designs and directions for their further research.
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来源期刊
International Journal of Hydrogen Energy
International Journal of Hydrogen Energy 工程技术-环境科学
CiteScore
13.50
自引率
25.00%
发文量
3502
审稿时长
60 days
期刊介绍: The objective of the International Journal of Hydrogen Energy is to facilitate the exchange of new ideas, technological advancements, and research findings in the field of Hydrogen Energy among scientists and engineers worldwide. This journal showcases original research, both analytical and experimental, covering various aspects of Hydrogen Energy. These include production, storage, transmission, utilization, enabling technologies, environmental impact, economic considerations, and global perspectives on hydrogen and its carriers such as NH3, CH4, alcohols, etc. The utilization aspect encompasses various methods such as thermochemical (combustion), photochemical, electrochemical (fuel cells), and nuclear conversion of hydrogen, hydrogen isotopes, and hydrogen carriers into thermal, mechanical, and electrical energies. The applications of these energies can be found in transportation (including aerospace), industrial, commercial, and residential sectors.
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