DocumentCode :
2283374
Title :
Quantification of light absorption and photosynthesis of tobacco canopy using 3-D modeling
Author :
Tongxin Shi ; Yuntao Ma ; Jie Wu ; Xiang Li ; Yan Guo ; Zhaoli Xu ; Yan Jin ; Yuhong Yang
Author_Institution :
Coll. of Resources & Environ, China Agric. Univ., Beijing, China
fYear :
2012
fDate :
Oct. 31 2012-Nov. 3 2012
Firstpage :
340
Lastpage :
346
Abstract :
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.
Keywords :
crops; light absorption; photosynthesis; solid modelling; tobacco industry; 3D laser scanning; 3D modeling; 3D scanning; K326 tobacco cultivar; Y87 tobacco cultivar; architecture quantification; canopy light absorption; canopy light distribution; crop; digitizing method; individual leave photosynthesis; leaf outline; leaf surface geometry; light absorption quantification; plant architecture; static 3D model; tobacco canopy; tobacco plant; 3-D scanning; digitizing; functional-structural plant model; plant architecture; potential photosynthesis; radiation interception; simulation; tobacco;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Plant Growth Modeling, Simulation, Visualization and Applications (PMA), 2012 IEEE Fourth International Symposium on
Conference_Location :
Shanghai
Print_ISBN :
978-1-4673-0067-4
Type :
conf
DOI :
10.1109/PMA.2012.6524855
Filename :
6524855
Link To Document :
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