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https://dspace.ncfu.ru/handle/123456789/32169Полная запись метаданных
| Поле DC | Значение | Язык |
|---|---|---|
| dc.contributor.author | Abornev, D. V. | - |
| dc.contributor.author | Аборнев, Д. В. | - |
| dc.contributor.author | Taran, S. A. | - |
| dc.contributor.author | Таран, С. А. | - |
| dc.contributor.author | Khashchenko, A. А. | - |
| dc.contributor.author | Хащенко, А. А. | - |
| dc.contributor.author | Idrisova, A. A. | - |
| dc.contributor.author | Идрисова, А. А. | - |
| dc.date.accessioned | 2025-10-22T14:38:22Z | - |
| dc.date.available | 2025-10-22T14:38:22Z | - |
| dc.date.issued | 2025 | - |
| dc.identifier.citation | Ovchinnikova, S., Abornev, D., Taran, S., Khashchenko, A., Idrisova, A. Energy-efficient microclimate control for greenhouse heat deficit compensation // E3S Web of Conferences. - 2025. - 646. - art. no. 00009. - DOI: 10.1051/e3sconf/202564600009 | ru |
| dc.identifier.uri | https://dspace.ncfu.ru/handle/123456789/32169 | - |
| dc.description.abstract | Greenhouse vegetable cultivation is currently an energy-intensive process, with high production costs driven by the expenses associated with greenhouse infrastructure and heating systems. Consequently, the design and construction of greenhouse facilities must prioritize the most rational and energy-efficient heating solutions, integrating conventional boiler systems with renewable energy sources such as solar power. Solar heating in greenhouses operates on the principle of the greenhouse effect, while the incorporation of thermal mass—typically in the form of soil—allows for a delayed onset of the heating season. The selection of an appropriate thermal storage system is therefore critical, as it enables the mitigation of fluctuations in solar energy availability by storing excess daytime heat for nighttime use. This study examines the optimal type of heat storage tank to address daily thermal deficits, employing a comprehensive analytical approach to evaluate the problem. The reliability of the resulting recommendations is verified through extensive theoretical and thermophysical calculations. Furthermore, the practical implementation of the energy conservation principles discussed herein is illustrated using the climatic conditions of Stavropol Krai as a case study. | ru |
| dc.language.iso | en | ru |
| dc.publisher | EDP Sciences | ru |
| dc.relation.ispartofseries | E3S Web of Conferences | - |
| dc.subject | Microclimate | ru |
| dc.subject | Energy-efficient microclimate control | ru |
| dc.subject | Greenhouse | ru |
| dc.subject | Heat deficit | ru |
| dc.title | Energy-efficient microclimate control for greenhouse heat deficit compensation | ru |
| dc.type | Статья | ru |
| vkr.inst | Институт перспективной инженерии | ru |
| Располагается в коллекциях: | Статьи, проиндексированные в SCOPUS, WOS | |
Файлы этого ресурса:
| Файл | Размер | Формат | |
|---|---|---|---|
| scopusresults 3700.pdf Доступ ограничен | 127.36 kB | Adobe PDF | Просмотреть/Открыть |
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