DocumentCode
1931193
Title
Towards Simulating the Biomechanical Acclimation of Tree Roots Using Numerical Analyses
Author
Ji, Jinnan ; Fourcaud, Thierry ; Zhang, Zhiqiang
Author_Institution
Key Lab. of Soil & Water Conservation & Desertification Combating, Beijing Forestry Univ., Beijing
fYear
2006
fDate
13-17 Nov. 2006
Firstpage
78
Lastpage
84
Abstract
2D finite element (FE) analysis of tree overturning was carried out. The main objective was to determine the effect of particular roots on anchorage strength in two contrasted soils and to discuss acclimation of root growth with regard to mechanical constraints. The FE model was based on the description of herringbone-like root patterns. Tree overturning simulations were performed applying a lateral displacement to a rigid stem. The results showed that lateral roots are the main components of tree anchorage in clay-like soil whereas the taproot plays a more significant role in sand. The modes of failure were different in the two soils, resulting in different root-plate shapes and rotation axis positions. Anisotropic secondary growth as a response to mechanical perturbations was also discussed based on the calculation of von Mises´ stresses at the surface of the root elements. In conclusion, we propose a new concept whereby functional structural plant models are linked with biomechanical models in order to test hypotheses concerning tree growth acclimation to mechanical stresses.
Keywords
agriculture; biomechanics; clay; finite element analysis; mechanical strength; sand; soil; stress effects; 2D finite element analysis; biomechanical acclimation; clay; herringbone-like root patterns; mechanical stress; numerical analyses; soil; tree anchorage; tree overturning simulations; tree roots; Analytical models; Finite element methods; Forestry; Morphology; Numerical analysis; Shape; Soil; Stress; Topology; Water conservation;
fLanguage
English
Publisher
ieee
Conference_Titel
Plant Growth Modeling and Applications, 2006. PMA '06. Second International Symposium on
Conference_Location
Beijing
Print_ISBN
978-0-7695-2851-9
Type
conf
DOI
10.1109/PMA.2006.43
Filename
4548352
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