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Algebraic Difference Equations Of Stand Height, Diameter, And Volume Depending On Stand Age And Site Factors For Estonian State Forests

机译:林分高度,直径和体积的代数差分方程式,取决于林分年龄和站点因素,爱沙尼亚州森林

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Algebraic difference equations of stand height, diameter, and volume depending on dominant species and site factors have been explored on the basis of Estonian state forest inventory data. Stand variables such as total age, average height, breast height diameter, volume, origin (naturally regenerated or cultivated), forest site type and dominant species from forest inventory database files of Estonian state forests have been used as initial data for this study. A total of 171 data series of height, diameter and volume on age were calculated as averages of data groups by site type, dominant species, origin, and age classes of 5 years. The Cieszewski, Bella (1989) algebraic difference equation has been used for model construction. First, tree parameters of the Hossfeld function were estimated for each of the height, diameter and volume series and relationships between the parameters were later studied. In the final model, dominant tree species, thickness of organic layer of soil, stand origin, height, diameter, and volume at given age were used as input variables. The model is included in the Estonian state forest information system and in several software packages for forest inventory data processing.
机译:根据爱沙尼亚国家森林资源清查数据,研究了取决于优势物种和立地因素的林分高度,直径和体积的代数差异方程。林分变量,例如总年龄,平均身高,胸高,直径,数量,来源(自然再生或栽培的),森林地类型和来自爱沙尼亚州森林的森林清单数据库文件中的优势树种,已被用作本研究的初始数据。根据站点类型,优势物种,起源和5年年龄类别,总共计算了171个年龄,身高,直径和年龄的数据系列,作为数据组的平均值。 Cieszewski,Bella(1989)的代数差分方程已用于模型构建。首先,针对高度,直径和体积序列中的每一个估计Hossfeld函数的树参数,然后研究这些参数之间的关系。在最终模型中,将给定年龄的优势树种,土壤有机层厚度,林分起源,高度,直径和体积用作输入变量。该模型包含在爱沙尼亚州森林信息系统中,并包含在一些用于森林清单数据处理的软件包中。

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