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Thermal modelling of asymmetric overlap roof greenhouse with experimental validation

机译:具有实验验证的非对称重叠屋顶温室的热建模

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摘要

Global solar radiation availability model and thermal model for newly designed asymmetric overlap roof shape (AORS) greenhouse are ?presented and experimentally validated. Instantaneous solar radiation flux is utilised in a dynamic thermal model to ascertain the hourly plant and inside air temperature. The AORS is also compared with the previously developed two best greenhouse shapes. An experimental validation of both the models is carried out for the measured instantaneous solar radiation, plant and inside air temperature for a typical day in summer at Ludhiana (31°N and 77°E), Punjab, India. During the experimentation, a tomato crop was grown inside the greenhouse. From the results, it can be inferred that an east–west orientation AORS greenhouse should be preferred due to a lesser solar radiation capture in summer months. The predicted plant and air temperatures are in good agreement with the measured data having a root mean square error of 4.69 and 3.7, respectively.
机译:全球太阳能辐射可用性模型和新设计的非对称重叠屋顶形状(AORS)温室的热模型?呈现和实验验证。 瞬时太阳辐射通量用于动态热模型,以确定每小时植物和内部气温。 还与先前开发的两个最佳温室形状进行了比较。 在夏季(31°N和77°E),印度旁观者的典型日,在夏天的典型日,对典型的瞬时太阳辐射,植物和内部气温进行了实验验证。 在实验期间,在温室内生长了番茄作物。 从结果中,由于夏季的太阳辐射捕获较小的太阳辐射捕获,可以推断出东西方定位助线室应优先于其。 预测的植物和空气温度与具有4.69和3.7的均方根误差的测量数据很好。

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