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Vibration behavior of plantation-grown Scots pine trees in response to wind excitation

机译:人工种植的苏格兰松树响应风激励的振动行为

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This paper deals with the dynamic responses of three plantation-grown Scots pine trees to turbulent wind loading. Although individual tree movement was complicated and irregular in the analyzed wind speed range (hourly mean wind speeds at canopy top below 4 m s(-1)), results from the cross-wavelet transform and wavelet coherence calculations demonstrate that wind-induced tree displacement strongly covaried with wind loads exerted on the trees by coherent structures. These wind loads caused largest tree displacements in the along wind direction as well as in the across wind direction. The absorption of energy available from wind loads in the range of the damped natural sway frequencies of the sample trees' stems was of minor importance for tree displacement. The application of the bi-orthogonal decomposition provided insight into the resulting modal deformations of the sample trees stems. Based on measured stem displacement data, the mean mode shapes for the first eight stem vibration modes (four mean mode shapes in along wind direction and four mean mode shapes in across wind direction) could be identified. The shapes of these modes were quite similar to the normal mode shapes of a clamped-free beam. For the analyzed wind speed range it is shown that most of the energy absorbed by the trees from the wind is dissipated by tree sway in the first mode. Higher vibration modes localized on the sample trees' stems were only of minor importance for the trees' responses to wind
机译:本文研究了三种人工种植的苏格兰松树对湍流风荷载的动态响应。尽管在分析的风速范围内(在树冠顶部的每小时平均风速低于4 ms(-1)),单个树的运动复杂且不规则,但交叉小波变换和小波相干计算的结果表明,风致树的位移强烈与通过相干结构施加在树木上的风荷载有关。这些风荷载在沿风向以及沿风向引起最大的树木位移。在树木的茎的阻尼自然摇摆频率范围内,风荷载对能量的吸收对于树木的移位没有重要意义。双正交分解的应用提供了对样本树茎最终模态变形的见解。基于测得的阀杆位移数据,可以确定前八个阀杆振动模式的平均模式形状(沿风向的四个平均模式形状和跨风向的四个平均模式形状)。这些模式的形状与自由夹持光束的正常模式形状非常相似。对于所分析的风速范围,表明在第一模式中树木从风中吸收的大部分能量被树木的摇摆耗散。定位在样本树的茎上的较高振动模式对于树木对风的响应仅次要重要性

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