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Quantification of light absorption and photosynthesis of tobacco canopy using 3-D modeling

机译:使用3-D建模量化烟草冠层的光吸收和光合作用

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Plant architecture is one of the determinants on canopy light absorption and photosynthesis. The quantification of architecture is rather difficult for some specific crops, i.e. tobacco. In this study, a field experiment was carried out to study the architecture of two tobacco cultivars (Y87 and K326) in situ by the combination of 3-D laser scanning and digitizing methods at the squaring stage. Static 3-D model of tobacco plant was built based on leaf surface geometry (collected by 3-D scanning) and leaf outline (obtained by digitizing in situ). The parameters describing plant architecture were derived and light absorption and potential photosynthesis of individual leaves as well as plants were calculated utilizing 3-D modeling. The validation results indicated that the canopy light distribution can be computed rather accurately comparing with the field measurements. Simulation results showed light absorption and potential photosynthesis of Y87 were lower than those of K326, partly because the leaf area of individual Y87 plants was smaller than that of K326.
机译:植物结构是决定冠层光吸收和光合作用的决定因素之一。对于某些特定的农作物,例如烟草,很难对结构进行量化。在这项研究中,进行了现场试验,以在平方时通过3-D激光扫描和数字化方法相结合的方法就地研究了两个烟草品种(Y87和K326)的结构。基于叶片表面几何形状(通过3-D扫描收集)和叶片轮廓(通过原位数字化获得)建立了烟草植物的静态3-D模型。得出描述植物结构的参数,并利用3-D建模计算单个叶片以及植物的光吸收和潜在的光合作用。验证结果表明,与野外测量相比,冠层光分布可以相当精确地计算出来。模拟结果表明,Y87的光吸收和潜在的光合作用低于K326,部分原因是单个Y87植物的叶面积小于K326。

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