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[Sustainable Energy Developments] Geothermal,Wind and Solar Energy Applications in Agriculture and Aquaculture || Chapter 7: Fundamentals of solar energy

DOI:10.1201/9781315158969-8 出版年份:2017 更新时间:2025-09-04 15:30:14
摘要: Modern agricultural systems are characterized by the intensive and optimal use of land and water, turning agricultural exploitation into a semi-industrial concept. Greenhouses are systems suitable both for zones with unfavorable climatic conditions – allowing crop growth regardless of the ambient temperature – and for regions with less restrictive weather – with the aim of increasing crop productivity and improving fruit quality. In this context, a secure and environmentally friendly energy supply must be considered, for any power range or circumstance, including for stand-alone installations. Crop growth is primarily determined by climate and the amount of water and fertilizers applied through irrigation. Therefore, greenhouses are ideal for farming because they allow one to optimize these physical parameters, via the photosynthetic process (Ramírez-Arias et al., 2012), to enhance biomass production. This manipulation requires energy consumption, depending on the crop’s physiological requirements, and the production patterns adopted for yield quantity and timing. The present general concern on the development of more efficient and sustainable productive activities has increased interest in the evaluation of alternatives to the conventional energy sources in the sector; presently many are involved in processes for assessing the environmental feasibility and technological development of such alternatives (Antón et al., 2007; Bojacá et al., 2014; Martínez-Blanco et al., 2011; Page et al., 2012; Romero-Gámez et al., 2012; Torrellas et al., 2013; van der Werf et al., 2014). This work aims to provide an overview of the existing options for the integration of renewable sources in greenhouses located in semi-arid regions where, for example, the high availability of solar radiation facilitates its use for the fulfillment of a certain percentage of the heat and/or electricity loads of greenhouses. Accordingly, this overview contains the basic technological aspects of the main renewable technologies applicable in greenhouses, some simplified design tools and criteria for their selection. Finally, it includes a summary of selected experiences in this field. The main objective is to contribute to a better understanding of the technologies that should support the promotion and development of projects for the implementation of renewable energies in agriculture.
作者: Francisco Javier Cabrera,Jorge Antonio Sánchez-Molina,Guillermo Zaragoza,Manuel Pérez-García,Francisco Rodríguez-Díaz
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To provide an overview of the existing options for the integration of renewable sources in greenhouses located in semi-arid regions, focusing on the use of solar radiation and biomass resources for the fulfillment of the thermal and electrical loads in farms.

Renewable energies are considered very suitable for their integration in greenhouses located in regions with semi-arid climates, provided the corresponding systems do not compete for ground occupation or do not interfere with radiation catching by the crops. Solar energy, both in the way of heat and/or electricity, must be considered as the primary option. Biomass is also considered a suitable option, provided enough supply is available. The use of optimal control algorithms is important for obtaining energy savings in greenhouses and for the efficient management of the energy-consuming systems.

The main limiting factor for alternative energy source integration in greenhouses is the competition for ground use between intensive cropping and the energy systems themselves. This results in a reduction of the area cultivated or the blocking of photosynthetic active radiation (PAR), in cases where a fraction of the greenhouse roofs are used for systems installation. Additionally, from a structural point of view, systems integration has to take into account that any additional mechanical loads should not involve changes in the support frames and elements, which are generally designed for light envelopes (plastic or thin glass).

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