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Experimental Evaluation by Sonic Anemometry of Airflow in a Mediterranean Greenhouse Equipped with a Pad-Fan Cooling System

机译:通过声波风速测定法对配备垫式风扇冷却系统的地中海温室中的气流进行实验评估

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The aim of the present work is to study the airflow and distribution of temperature and humidity in a multi-span greenhouse equipped with a pad-fan cooling system operating both with a well-developed tomato crop and without a crop (simulating recently transplanted plants in the greenhouse). Maximum values of air velocity were recorded at the entrance of the pads. In the first few meters of air inside the greenhouse, high levels of turbulence intensity were recorded as the air dampened by the pads mixed with the hot, dry air inside and the airflow cross-section increased. The crop has a clear stabilizing effect on the airflow, producing lower energy levels and turbulence than when the greenhouse was empty. The maximum temperature gradient was recorded in the greenhouse that was empty, with an increase of 5.2°C between the entrance of air through the pad and the exit through the extractor fans. This climate heterogeneity when young plants are transplanted in the greenhouse can produce over-consumption of irrigation water, which must be considered by growers to avoid plant damage by water stress. With a crop in the greenhouse, the maximum difference in temperature was reduced to 2.3°C
机译:本工作的目的是研究装有跨风扇冷却系统的多跨温室中的气流以及温度和湿度的分布,该系统既可使用成熟的番茄作物也可不使用农作物(模拟最近移植的番茄)温室)。在垫的入口处记录空气速度的最大值。在温室内最初的几米空气中,记录了高水平的湍流强度,这是由于垫子吸收的空气与内部热,干燥的空气混合,气流横截面增加所致。作物对气流具有明显的稳定作用,与空温室相比,产生的能量水平和湍流度更低。在空的温室中记录了最大温度梯度,在通过垫的空气入口和通过抽气扇的出口之间增加了5.2°C。当将年轻植物移植到温室中时,这种气候异质性会产生过多的灌溉用水,种植者必须考虑到灌溉用水的过量使用,以避免水分胁迫对植物造成损害。在温室中种植农作物时,最大温度差降低到2.3°C

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