A finite element model was developed to study the influence of aerial architecture on the structural dynamics of trees. The model combines a complete description of the axes of the aerial architecture of the plant with numerical techniques suitable for dynamic nonlinear analyses. Trees were modeled on the basis of morphological measurements that were previously made on three 4-year-old Pinus pinaster Ait. saplings originating from even-aged stands. Calculated and measured oscillations were compared to evaluate model behavior. The computations allowed the characteristics of the fundamental mode of vibration to be estimated with satisfactory accuracy. Inclusion of a topological description of the aerial system in a mechanical model provided i...
The relationship between form and function in trees is the subject of a longstanding debate in fores...
International audienceOscillation damping is of vital importance for trees to withstand strong gusty...
The relationship between form and function in trees is the subject of a longstanding debate in fores...
The aim of this study was to investigate the influence of aerial architecture on the dynamic charact...
This study presents a predictive dynamic model developed to analyse the mechanical response of trees...
Wind can alter plant growth and cause extensive, irreversible damage in forested areas. To hotter un...
International audienceThis study presents a predictive dynamic model developed to analyse the mechan...
A-09-15International audienceWind can alter plant growth and cause extensive, irreversible damage in...
Occurence of strong winds leads to important damage in forest stands, thus causing severe economical...
Plant architecture is a fundamental parameter to be used for biomechanical investigations. Complex b...
Wind is a major ecological factor for plants and a major economical factor for forestry. Mechanical ...
The relationship between tree structure and biomechanical functions is a key component in explaining...
Wind is a major ecological factor for plants and a major economical factor for forestry. Mechanical ...
International audienceStrong dynamic loads in man-made slender structures are likely to produce larg...
The relationship between form and function in trees is the subject of a longstanding debate in fores...
International audienceOscillation damping is of vital importance for trees to withstand strong gusty...
The relationship between form and function in trees is the subject of a longstanding debate in fores...
The aim of this study was to investigate the influence of aerial architecture on the dynamic charact...
This study presents a predictive dynamic model developed to analyse the mechanical response of trees...
Wind can alter plant growth and cause extensive, irreversible damage in forested areas. To hotter un...
International audienceThis study presents a predictive dynamic model developed to analyse the mechan...
A-09-15International audienceWind can alter plant growth and cause extensive, irreversible damage in...
Occurence of strong winds leads to important damage in forest stands, thus causing severe economical...
Plant architecture is a fundamental parameter to be used for biomechanical investigations. Complex b...
Wind is a major ecological factor for plants and a major economical factor for forestry. Mechanical ...
The relationship between tree structure and biomechanical functions is a key component in explaining...
Wind is a major ecological factor for plants and a major economical factor for forestry. Mechanical ...
International audienceStrong dynamic loads in man-made slender structures are likely to produce larg...
The relationship between form and function in trees is the subject of a longstanding debate in fores...
International audienceOscillation damping is of vital importance for trees to withstand strong gusty...
The relationship between form and function in trees is the subject of a longstanding debate in fores...