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A double-digitising method for building 3D virtual trees with non-planar leaves: application to the morphology and light-capture properties of young beech trees (Fagus sylvatica)

机译:一种使用非平面叶子构建3D虚拟树的双数字化方法:在幼小山毛榉树(Fagus sylvatica)的形态和光捕获特性中的应用

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摘要

We developed a double-digitising method combining a hand-held electromagnetic digitizer and a non-contact 3D laser scanner. The former was used to record the positions of all leaves in a tree and the orientation angles of their lamina. The latter served to obtain the morphology of the leaves sampled in the tree. As the scanner outputs a cloud of points, software was developed to reconstruct non-planar (NP) leaves composed of triangles, and to compute numerical shape parameters: midrib curvature, torsion and transversal curvature of the lamina. The combination of both methods allowed construction of 3D virtual trees with NP leaves. The method was applied to young beech trees (Fagus sylvatica L.) from different sunlight environments (from 1 to 100% incident light) in a forest in central France. Leaf morphology responded to light availability, with a more bent shape in well-lit leaves. Light interception at the leaf scale by NP leaves decreased from 4 to 10% for shaded and sunlit leaves compared with planar leaves. At the tree scale, light interception by trees made of NP leaves decreased by 1 to 3% for 100% to 1% light, respectively.
机译:我们开发了一种结合了手持式电磁数字转换器和非接触式3D激光扫描仪的双数字化方法。前者用于记录树上所有叶子的位置及其叶片的方位角。后者用于获得在树中采样的叶子的形态。当扫描仪输出点云时,开发了软件来重建由三角形组成的非平面(NP)叶片,并计算数值形状参数:椎板的中肋曲率,扭转和横向曲率。两种方法的组合允许使用NP叶子构建3D虚拟树。该方法已应用于法国中部森林中不同阳光环境(入射光从1%到100%)的年轻山毛榉树(Fagus sylvatica L.)。叶片形态对光的可用性作出响应,在光线充足的叶片中形状更弯曲。与平面叶子相比,阴影和阳光照射下,NP叶片在叶子尺度上的光截留率从4%下降到10%。在树的规模上,由NP叶制成的树木的光拦截对于100%到1%的光分别减少了1-3%。

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