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首页> 外文期刊>Journal of Wind Engineering and Industrial Aerodynamics: The Journal of the International Association for Wind Engineering >A wind tunnel study of the aerodynamic characteristics of a scaled, aeroelastic, model tree
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A wind tunnel study of the aerodynamic characteristics of a scaled, aeroelastic, model tree

机译:鳞片,空气弹性,模型树的空气动力学特征的风洞研究

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摘要

Tree crowns, unlike most bluff bodies, are both porous and flexible, so frontal area and crown deflection vary with wind speed. The former leads to aerodynamic force characteristics that vary with frontal area and wind speed while the latter is related to energy transfer between wind and tree. In order to investigate aerodynamic force characteristics and energy transfer, an approach to constructing an aeroelastic model of a tree, which satisfies geometric similarity, dynamic similarity and dimensionless parameters including Froude number, Cauchy number and density ratio, was developed and wind tunnel tests were carried out. The model was designed with eight distinct crown configurations according to different quantities of leaves. Aerodynamic forces, wind speed and frontal area were measured synchronously. The results showed that crown sheltering effects effectively limited mean crown deflection, which limit the mean base overturning moment coefficient. In addition, the energy transfer of the model with different crown configurations were investigated, and the characteristics of energy transfer were identified. It was shown that the crown frequency effectively controls the response via mechanical admittance, which amplified the response at the crown frequency.
机译:与大多数虚空体不同,树冠都是多孔且柔韧的,所以正面区域和冠状偏转随风速而变化。前者导致空气动力特性,随着前部区域和风速而变化,而后者与风和树之间的能量转移有关。为了调查空气动力学特性和能量转移,开发了一种构建一棵树的空气弹性模型的方法,其开发了满足包括Froude Number,Cauchy数和密度比的几何相似性,动态相似性和无量纲参数,并进行了风隧道试验出去。根据不同数量的叶子,该模型设计有八个不同的冠部配置。同步测量空气动力,风速和正面区域。结果表明,皇冠庇护效果有效地有限的平均冠偏转,这限制了平均基础倾覆矩系数。此外,研究了具有不同冠部配置的模型的能量转移,鉴定了能量转移的特征。结果表明,冠频有效地通过机械进入控制响应,该终止于冠频处放大响应。

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