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Assessment of evaporative cooling efficiency in greenhouses equiped with wetted porous plates

机译:装有多孔多孔板的温室中蒸发冷却效率的评估

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摘要

The main objective of this study was to experimentally validate a mechanistic model for predicting the cooling efficiency (η) of wetted porous plates built with expanded clay. The expanded clay material was physically characterized by specific mass, surface area, and volume. The model was validated with dry bulb temperature (Tdb, °C) and air relative humidity (RH, %) data, which were continuously monitored in two different points, upstream and downstream the direction of the air passing through the porous plate. Data collection was carried out consecutively for a period of 10 days, between 11:00 a.m. and 4:00 p.m. Average values for η, simulated and observed, were 74.8 ± 7.4% and 68.3 ± 8.3%, respectively. Based on the developed model, it was observed that η was higher than 40% for Tdb > 30 °C and constant RH at 45%. The simulation for predictions indicates that the increase in the air temperature greater than 20 °C may affect negatively the production in greenhouses from states located in tropical and subtropical countries as Minas Gerais, Brazil, if some design criteria in the evaporative cooling system are not revised.
机译:这项研究的主要目的是通过实验验证用于预测用膨胀粘土建造的湿式多孔板的冷却效率(η)的机械模型。膨胀的粘土材料在物理上由比质量,表面积和体积表征。该模型已通过干球温度(Tdb,°C)和空气相对湿度(RH,%)数据进行了验证,这些数据在两个不同的点(穿过多孔板的空气方向的上游和下游)被连续监测。在上午11:00至下午4:00之间连续进行了10天的数据收集。模拟和观察到的η平均值分别为74.8±7.4%和68.3±8.3%。根据开发的模型,可以观察到Tdb> 30°C和RH恒定为45%时,η高于40%。预测的模拟结果表明,如果未修改蒸发冷却系统的某些设计标准,则高于20°C的气温升高可能会对位于巴西米纳斯吉拉斯州等热带和亚热带国家的温室产生负面影响。 。

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