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Three-dimensional aerodynamic structure of a tree shelterbelt: Definition, characterization and working models

机译:防护林带的三维空气动力学结构:定义,表征和工作模型

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In order to make recommendations to landowners with regard to the design and management of tree shelterbelts, it is necessary to understand and predict the wind flow patterns associated with shelterbelt structure. A structural description is a prerequisite for any prediction of wind flow. Optical porosity (percentage of open spaces on the side view of a shelterbelt) has been used as a structural descriptor of a shelterbe however, it is a 2-dimensional measure unable to fully represent the aerodynamic influence of a tree shelterbelt. Based on numerous studies observing the wind fields associated with shelterbelt structure, the overall aerodynamic structure of a tree shelterbelt in three dimensions is defined by its external structural characteristics (length, height, width, and crosssectional shape) and by its internal structural components (amounts and arrangements of vegetative surface area and volume, and geometric shape of individual vegetative elements). In order to associate the defined structure with wind speed, turbulent stress, and pressure, it is characterized using two structural descriptors the spatial functions of vegetative surface area density (vegetative surface area per unit canopy volume) and cubic density (vegetative volume per unit canopy volume). For field estimation, the two structural descriptors are expressed in three dimensions using two working models in terms of 1- or 2- dimensional sub-functions capable of being defined with field measurements. This paper discusses the rationale behind the definition, characterization, and working models for the 3-dimensional aerodynamic structure of a tree shelterbelt.
机译:为了向土地所有者就树木防护林带的设计和管理提出建议,有必要了解和预测与防护林带结构相关的风流模式。结构描述是任何风速预测的前提。光学孔隙率(防护带侧视图上的开放空间的百分比)已用作防护带的结构描述;但是,这是一种二维测量,无法完全代表树木防护林带的空气动力学影响。基于对与防护林带结构相关的风场进行的大量研究,基于三个方面,树木防护林带的整体空气动力学结构由其外部结构特征(长度,高度,宽度和横截面形状)及其内部结构成分(数量)来定义。营养表面积和体积的安排,以及各个营养元素的几何形状)。为了使定义的结构与风速,湍流应力和压力相关联,使用两个结构描述符对植物表面积密度(每单位冠层体积的植物表面积)和立方密度(每单位冠层的植物体积)的空间函数进行表征。体积)。为了进行现场估算,使用两个工作模型按照能够通过现场测量定义的一维或二维子函数,在三个维度中表示两个结构描述符。本文讨论了3D防护林的空气动力学结构的定义,特征和工作模型的基本原理。

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