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Modeling Air Temperature Inside an Organic Vegetable Greenhouse

机译:在有机蔬菜温室内造型气温

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Air temperature is an important microclimate parameter in a greenhouse as it influences root growth and controls plant growth and development. Thus, the precise monitor and model temperature under greenhouse is needed to maintain the plants in optimal conditions. This research aims to model the temperature under a greenhouse using energy balance model. The study monitored the temperature inside and outside the greenhouse in a humid tropical environment. Based on the data, heat exchange constants of greenhouse components were derived, they were: 0.0029 (solar radiation), 0.8 (air) and 0.01 (heat exchange from greenhouse component). The calibrated model enables the calculation of temperature inside a greenhouse based on its outside air temperature, wind speed, and solar radiation. Testing the model against an independent time series showed the high accuracy of the model with an R2 value of 0.99, RMSE = 0.0085 and model efficiency Ef = 0.99. Based on the results, most advantageous strategies for air temperature control inside the greenhouse include the control of air ventilation.
机译:空气温度是温室的重要细节参数,因为它会影响根系生长和控制植物生长和发展。因此,需要温室下的精确监测和模型温度以在最佳条件下维持植物。该研究旨在使用能量平衡模型模拟温室下的温度。该研究监测了温室内外的温度,在潮湿的热带环境中。基于数据,衍生温室成分的热交换常数,它们是:0.0029(太阳辐射),0.8(空气)和0.01(温室组分的热交换)。校准模型可以基于其外部空气温度,风速和太阳辐射来计算温室内的温度。针对独立时间序列测试模型显示型号的高精度,R2值为0.99,RMSE = 0.0085,效率EF = 0.99。基于结果,温室内部空气温度控制的最有利策略包括控制空气通风。

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