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Model Study on Applicability of a Semi Closed Greenhouse Concept in Almeria: Effects on Greenhouse Climate, Crop Yield and Resource Use Efficiency

机译:半封闭温室概念在阿尔梅里亚的适用性模型研究:对温室气候,作物产量和资源利用效率的影响

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The application of climate control equipment is becoming increasingly popular in Mediterranean protected horticulture. New climate control techniques reduce ventilation requirement and, thus, increase the benefits of carbon dioxide fertilization. Moreover, temperature extremes are prevented. Improvements on the controllability of the greenhouse climate can enhance production in terms of quantity and increase the water use efficiency at the same time. Those benefits must balance the costs associated with the use of climate control equipment. In an attempt to design and evaluate a semi-closed greenhouse system suitable for application in the Mediterranean area, benefits and problems for this climatic region were revealed. This paper presents a theoretical design study and analysis to assess the viability of a semi-closed greenhouse concept in the Mediterranean climate region. Nine greenhouse concepts were generated for Almeria (36° NL) and evaluated afterwards by a panel of experts. One concept received on-average highest score. This concept was a sustainable energy driven greenhouse using biomass and green electricity to run a compressor heat pump. Ventilation decision was based on the trade-off between cooling costs and yield loss at suboptimal temperatures. The concept was evaluated more systematically in a simulation study that contributed to design consistency and assessed greenhouse performance with respect to constraints and targets set in design requirements. From the simulations it was concluded that the selected sustainable energy driven semi-closed greenhouse that uses wind power and optionally biomass to run a compressor heat pump to heat, cool and dehumidify the greenhouse drastically reduced water use, the use of fossil energy and CO_2 emission compared to a conventional greenhouse. Investment and operational costs of the technologically advanced equipment used, were compensated by a higher crop production, thus predicting economic feasibility.
机译:气候控制设备的应用越来越普及地中海设施园艺。新的气候控制技术,减少通风要求,因此,增加的二氧化碳施肥的好处。此外,防止极端温度。在温室气候的可控性改善可以提高生产在数量和同时增加水的利用效率。这些利益必须平衡与使用气候控制设备相关的成本。在试图设计和评估适合在地中海地区申请一个半封闭的温室系统,优点和问题,为这个气候区被揭露。本文提出了一种理论设计的研究和分析,以评估地中海气候区的半封闭温室概念的可行性。阿尔梅里亚(36°NL)产生,并通过一个专家小组进行评估之后九个温室概念。一个概念收到平均得分最高。这个概念是利用生物质和绿色电力来运行压缩机热泵可再生能源驱动的温室。通风决定是基于所述权衡冷却成本和在次优的温度下产量损失之间。这个概念是在一个模拟的研究,促成设计相对于设计要求设定限制条件和目标的一致性和评价温室性能更系统的评价。从模拟得出的结论是所选择的可持续能源驱动的半封闭的温室使用风力功率和任选的生物量来运行的压缩机的热泵热,冷却和除湿的温室大幅度减少水的使用,使用化石能源和CO_2发射的相比于常规的温室。投资和所使用的先进技术设备的运营成本,通过更高的作物生产的补偿,从而预测经济可行性。

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