Modelling the biomechanical behaviour of growing trees at the forest stand scale. Part 1: Development of an incremental Transfer Matrix Method and application to simplified tree structures

被引:18
作者
Ancelin, P
Fourcaud, T
Lac, P
机构
[1] Univ Bordeaux 1, CNRS, INRA, UMR,Lab Rheol Bois Bordeaux, F-33612 Cestas, France
[2] CIRAD, AMIS, AMAP, Programme Modelisat Plantes,TA40 PS2, F-34398 Montpellier, France
关键词
biomechanics; negative-gravitropic response; reaction wood; stem shape; growth stresses;
D O I
10.1051/forest:2004019
中图分类号
S7 [林业];
学科分类号
0829 ; 0907 ;
摘要
Stem straightness defects are often associated with heterogeneities in wood structure in relation to tree tropisms. This paper presents a numerical model which is dedicated to simulate the biomechanical behaviour of growing trees. A simplified description of tree structure, separating trunk and crown, has been used in order to perform future calculations at the stand level. The model is based on the Transfer Matrix Method, which was adjusted under an incremental form to compute the evolution of trunk biomechanics during growth. Deflections due to self-weight distribution and straightening up reactions, which are associated with maturation strains of reaction wood cells, were considered. This model has been implemented in the CAPSIS software. Numerical results were compared to those obtained by the software AMAPpara, which is more applicable to the whole tree architecture level. Limits of the simplified description, which will be useful for studies at stand level, are discussed.
引用
收藏
页码:263 / 275
页数:13
相关论文
共 46 条
[21]  
FOURCAUD T, 1999, ACT 5 C FOR CULT IND, P77
[22]  
FOURNIER M, 1990, WOOD SCI TECHNOL, V24, P131, DOI 10.1007/BF00229049
[23]  
Fournier Meriem, 1994, Biomimetics, V2, P229
[24]   Comparison of two models for predicting the critical wind speeds required to damage coniferous trees [J].
Gardiner, B ;
Peltola, H ;
Kellomäki, S .
ECOLOGICAL MODELLING, 2000, 129 (01) :1-23
[25]   THEORY OF GROWTH STRESSES [J].
GILLIS, PP .
HOLZFORSCHUNG, 1973, 27 (06) :197-207
[26]  
Halle F., 2012, Tropical trees and forests: An architectural analysis
[27]   GROWTH AND YIELD OF MARITIME PINE (PINUS-PINASTER AIT) - THE AVERAGE DOMINANT TREE OF THE STAND [J].
LEMOINE, B .
ANNALES DES SCIENCES FORESTIERES, 1991, 48 (05) :593-611
[28]   THE ELASTICITY AND VERTICAL-DISTRIBUTION OF STRESS WITHIN STEMS OF PICEA-SITCHENSIS [J].
MILNE, R ;
BLACKBURN, P .
TREE PHYSIOLOGY, 1989, 5 (02) :195-205
[29]   STRUCTURAL-ANALYSIS OF TREE TRUNKS AND BRANCHES - TAPERED CANTILEVER BEAMS SUBJECT TO LARGE DEFLECTIONS UNDER COMPLEX LOADING [J].
MORGAN, J ;
CANNELL, MGR .
TREE PHYSIOLOGY, 1987, 3 (04) :365-374
[30]   SUPPORT COSTS OF DIFFERENT BRANCH DESIGNS - EFFECTS OF POSITION, NUMBER, ANGLE AND DEFLECTION OF LATERALS [J].
MORGAN, J ;
CANNELL, MGR .
TREE PHYSIOLOGY, 1988, 4 (04) :303-313