Design of an innovative PV/T and heat pump system for greenhouse heating

Q3 Energy
Meltem Koşan, A. Akkoç, Ebubekir Dişli, M. Aktas
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引用次数: 3

Abstract

The very high annual heat demand of greenhouses is the most critical factor that increases production costs. Conventional methods are generally used to obtain the optimum temperature required for greenhouses. In these systems, greenhouse air is heated by a boiler and pipe networks are connected to it, and in this way, most of the heat energy is transferred from the greenhouse ceiling to the atmosphere. In addition, in the greenhouse, not only the air but also the soil should be heated in order not to spoil the roots of the plants. The objective of this research is to provide sustainable heating for greenhouse applications. For this purpose, an innovative heating system has been designed for greenhouse heating by using of solar energy and heat pump technologies. In this study, a new approach was presented by designing a novelty heat pump flow for the heat required in the greenhouse. With this design, not only greenhouse air but also the soil will be heated and the best conditions for the development of plants will be provided. In the system, an ethylene glycol water mixture was used to prevent damage caused by freezing. In addition, it is designed to provide sustainability with an auxiliary heater when solar radiation is insufficient. It is highly recommended to apply this presented system for all greenhouse types.
设计一种创新的PV/T和热泵系统用于温室供暖
温室每年的高热量需求是增加生产成本的最关键因素。通常采用常规方法来获得温室所需的最佳温度。在这些系统中,温室空气由锅炉加热,并与管网相连,通过这种方式,大部分热能从温室天花板转移到大气中。此外,在温室里,不仅要加热空气,还要加热土壤,以免损坏植物的根。本研究的目的是为温室应用提供可持续供暖。为此,利用太阳能和热泵技术,设计了一种创新的温室加热系统。在本研究中,提出了一种新的方法,即设计一种新型的热泵流来满足温室所需的热量。通过这种设计,不仅温室空气,而且土壤将被加热,为植物的生长提供最佳条件。在系统中,乙二醇水的混合物被用来防止冻结造成的损坏。此外,它的设计提供了一个辅助加热器,当太阳辐射不足的可持续发展。强烈建议将此系统应用于所有类型的温室。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Energy Systems
Journal of Energy Systems Environmental Science-Management, Monitoring, Policy and Law
CiteScore
1.60
自引率
0.00%
发文量
29
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