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Numerical Prediction of Thermal Environment and Energy Consumption in Tunnel-Type Greenhouse with Supplementary Air-mixing and Heating Device

机译:辅助空气混合加热装置的隧道式温室热环境和能耗的数值预测

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摘要

Owing to the fact that the growing of agricultural crops can be directly affected by climate conditions, largescale greenhouses are usually used to control the indoor climate conditions for cultivation in agriculture.The envelope of greenhouses generally consists of a polyvinyl chloride (PVC) sheet, which produces a so-called greenhouse effect and protection for crops from harmful insects. The research concerning indoor environmental conditions formed in greenhouses and precise numerical predictions of airflow and temperature distribution in large-scale greenhouses are important to develop effective designs from the viewpoint of energy-saving and the development of suitable indoor environments for agricultural products. To this end, this paper presents a numerical analysis of flow and temperature distributions in greenhouse and the effect of an air circulation fan for mixing air in the greenhouse. The uses of a PVC curtain inside the greenhouse and feedback control of supply air temperature were evaluated by coupled numerical analysis of Computational Fluid Dynamics. From the viewpoint of heat load of the supplementary heating device, the energy-saving effects of about 10-30% were confirmed upon introduction of a PVC curtain and air-mixing fan in a largescale PVC greenhouse. The sensor position in the greenhouse was confirmed to have a great impact on energy consumption.
机译:由于农作物的生长会直接受到气候条件的影响,因此通常使用大型温室来控制农业种植的室内气候条件。温室的外壳通常由聚氯乙烯(PVC)薄片组成,产生所谓的温室效应,并保护作物免受有害昆虫的侵害。从节能和发展适合农产品的室内环境的角度出发,有关温室中形成的室内环境条件的研究以及对大型温室中气流和温度分布的精确数值预测的研究对于开发有效的设计非常重要。为此,本文对温室中的流量和温度分布进行了数值分析,并使用了空气循环风扇来混合温室中的空气。通过计算流体动力学的耦合数值分析,评估了温室内PVC帘的使用和送风温度的反馈控制。从辅助加热装置的热负荷的观点来看,在大型PVC温室中引入PVC幕帘和空气混合风扇后,可确认节能效果约为10-30%。确认温室中的传感器位置对能耗有很大影响。

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