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首页> 外文期刊>Spanish Journal of Agricultural Research >Development of a model to calculate the overall heat transfer coefficient of greenhouse covers
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Development of a model to calculate the overall heat transfer coefficient of greenhouse covers

机译:开发用于计算温室覆盖物总传热系数的模型

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A Building Energy Simulation (BES) model based on TRNSYS, was developed to investigate the overall heat transfer coefficient (U-value) of greenhouse covers including polyethylene (PE), polycarbonate (PC), polyvinyl chloride (PVC), and horticultural glass (HG). This was used to determine the influences of inside-to-outside temperature difference, wind speed, and night sky radiation on the U-values of these materials. The model was calibrated using published values of the inside and outside convective heat transfer coefficients. Validation of the model was demonstrated by the agreement between the computed and experimental results for a single-layer PE film. The results from the BES model showed significant changes in U-value in response to variations in weather parameters and the use of single or double layer greenhouse covers. It was found that the U-value of PC, PVC, and HG was 9%, 4%, and 15% lower, respectively, than that for PE. In addition, by using double glazing a 34% reduction in heat loss was noted. For the given temperature U-value increases as wind speed increases. The slopes at the temperature differences of 20, 30, 40, and 50 °C, were approximately 0.3, 0.5, 0.7, and 0.9, respectively. The results agree with those put forward by other researchers. Hence, the presented model is reliable and can play a valuable role in future work on greenhouse energy modelling.
机译:建立了基于TRNSYS的建筑能量模拟(BES)模型,以研究包括聚乙烯(PE),聚碳酸酯(PC),聚氯乙烯(PVC)和园艺玻璃( HG)。这用于确定内外温差,风速和夜空辐射对这些材料的U值的影响。使用内部和外部对流传热系数的公布值对模型进行校准。单层PE膜的计算结果与实验结果之间的一致性证明了模型的有效性。 BES模型的结果表明,U值随天气参数的变化以及使用单层或双层温室覆盖物而发生了显着变化。结果发现,PC,PVC和HG的U值分别比PE低9%,4%和15%。另外,通过使用双层玻璃,发现热损失降低了34%。对于给定的温度,U值随风速的增加而增加。温度差为20、30、40和50°C时的斜率分别约为0.3、0.5、0.7和0.9。该结果与其他研究人员提出的结果一致。因此,所提出的模型是可靠的,并且可以在未来温室能源建模工作中发挥重要作用。

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