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Optimal Utilization of Light Energy in Semi-Closed Greenhouse Using Three-Dimensional Cucumber Model

机译:三维黄瓜模型半闭温室光能的最佳利用

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Both low temperature and light energy are important reasons for the decline in cucumber yield in winter of east and north China, therefore optimal utilization of light energy is critical for raising cucumber yield. In this study, Three-Dimensional (3D) cucumber canopy models were used to quantify the effects of weak light on dry matter production. Three 3D cucumber canopies were reconstructed with 20, 25, 30 leaves per plant respectively by using parametric modeling method. Light interception in these three 3D canopies from 8:00 to 15:00 on 4 Nov, 2015 was simulated by using the Radiosity-Graphic combined Model (RGM)with an hourly time step. CO2 assimilation per unit area was calculated using the FvCB photosynthetic model. As a result, the effectsof light intensity and CO2 concentration on the photosynthetic rate were considered. The leaf photosynthesis simulation result showed that during the daytime in winter, the limiting factor affecting the photosynthesis rate in winter was light intensity.Especially in the morning, the CO2 concentration in the greenhouse was significantly higher than other moments. Increasing the light intensity or canopy light interception at this time should be very beneficial to the increase in yield production. It could be concluded that 25-leaf canopy was a more suitable canopy structure to autumn and winter canopy photosynthetic yields, through the comparative analysis of photosynthetic characteristics in these three virtual 3D canopies. This study also provides animportant management basis for the optimal use of light in the greenhouse in winter of east China.
机译:低温和光能都是华北地区冬季黄瓜产量下降的重要原因,因此光能的最佳利用对于提高黄瓜产量至关重要。在本研究中,三维(3D)黄瓜冠层模型用于量化弱光对干物质生产的影响。通过使用参数模拟方法分别用每株植物20,25,30叶重建三维Cucumber Canopies。 2015年11月4日在2015年11月4日从8:00到15:00中的光线拦截是通过使用过光差 - 图形组合模型(RGM)的每小时时间步长。使用FVCB光合模型计算每单位面积的CO2同化。结果,考虑了光强度和CO2浓度对光合速率的影响。叶片光合作用仿真结果表明,在冬季白天,影响冬季光合速率的限制因素是光的强度。特别是早晨,温室中的二氧化碳浓度明显高于其他时刻。此时增加了光强度或冠层光截取应该非常有利于产量产生的增加。可以得出结论,通过对这三个虚拟3D檐篷中的光合特性的比较分析,25叶冠层是秋季和冬季冠层光合产量更合适的冠层结构。本研究还为华东冬季的温室最佳​​利用提供了动漫管理基础。

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