首页> 外文期刊>American journal of botany >Crown structure and wood properties: Influence on tree sway and response to high winds.
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Crown structure and wood properties: Influence on tree sway and response to high winds.

机译:树冠结构和木材特性:对树的摇摆和强风响应的影响。

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摘要

Wind can alter plant growth and cause extensive, irreversible damage in forested areas. To better understand how to mitigate the effects of wind action, we investigated the sensitivity of tree aerodynamic behavior to the material and geometrical factors characterizing the aerial system. The mechanical response of a 35-yr-old maritime pine (Pinus pinaster, Pinaceae) submitted to static and dynamic wind loads is simulated with a finite element model. The branching structure is represented in three dimensions. Factor effects are evaluated using a fractional experimental design. Results show that material properties play only a limited role in tree dynamics. In contrast, small morphological variations can produce extreme behaviors such as either very little or nearly critical dissipation of stem oscillations. Slender trees are shown to be relatively more vulnerable to stem breakage than uprooting. Dynamic loading leads to deflections and forces up to 20% higher near the base of the tree than those calculated for a static loading of similar magnitude. Effects of branch geometry on dynamic amplification are substantial yet not linear. The flexibility of the aerial system is found to be critical to reducing the resistance to the airflow and thus to minimizing the risk of failure.
机译:风能改变植物的生长,并在森林地区造成广泛的,不可逆转的破坏。为了更好地理解如何减轻风的影响,我们研究了树木空气动力学行为对表征航空系统的材料和几何因素的敏感性。使用有限元模型模拟了35岁海洋松(Pinus pinaster,松科)对静态和动态风荷载的机械响应。分支结构以三个维度表示。使用分数实验设计评估因子效应。结果表明,材料特性在树木动力学中仅发挥有限的作用。相反,小的形态变化会产生极端的行为,例如极少或几乎临界的杆振动消散。苗条的树木被证明比拔除树木更容易遭受茎断裂。动态载荷会导致变形,并且比在类似大小的静态载荷下计算出的力高出20%。分支几何形状对动态放大的影响很大,但不是线性的。航空系统的灵活性被发现对于减小气流阻力并从而最大程度地降低故障风险至关重要。

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