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Comparison of maximum size-density relationships based on alternate stand attributes for predicting tree numbers and stand growth.

机译:基于备用林分属性的最大尺寸-密度关系的比较,以预测树木数量和林分生长。

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摘要

Quantification of site occupancy or stand density is essential for modeling forest stand mortality, growth and yield. A variety of measures of stand density have been proposed. Diverse tree and stand attributes have been employed, but direct comparisons of the effectiveness of various measures for estimating number of trees for fully stocked stands and for predicting growth for stands at different stages of development are not possible due to the varying forms of the measures. Maximum size-density relationships are a widely-used type of stand density measure. Reineke's stand density index (SDI), which is based on number of stems per unit area and quadratic mean stem diameter, is the most commonly-applied stand density measure of this type. In the study reported here, stand density indices were developed by employing the structure of Reineke's index but using the stand attributes of mean stem volume and mean stand height, as well as mean stem diameter. When estimating number of trees and periodic volume growth per unit area using data from sample plots in planted stands of loblolly pine, the SDI based on mean diameter performed best with mean stem volume being second best and mean stand height third.
机译:站点占用或林分密度的量化对于模拟林分死亡率,生长和产量至关重要。已经提出了多种林分密度的措施。已经采用了不同的树木和林分属性,但是由于措施形式的不同,无法直接比较各种方法的有效性,这些方法用于评估林木存量充足的林木数量和预测不同发展阶段林分的生长。最大尺寸-密度关系是林分密度度量的一种广泛使用的类型。 Reineke的林分密度指数(SDI)基于每单位面积的茎数和二次平均茎直径,是这种类型中最常用的林分密度度量。在此处报告的研究中,林分密度指数是通过采用Reineke指数的结构来开发的,但使用了平均茎体积和平均林分高度以及平均茎直径的林分属性。在使用火炬松种植林分中的样地数据估算树木数量和每单位面积的周期性体积增长时,基于平均直径的SDI表现最佳,平均茎体积次之,平均林分高度排名第三。

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