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首页> 外文期刊>Ghana Journal of Forestry >INCORPORATING CROWN DIMENSIONS INTO STEM HEIGHT AND BASAL AREA GROWTH MODELS FOR AFRICAN WHITE WOOD (TRIPLOCHITON SCLEROXYLON)
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INCORPORATING CROWN DIMENSIONS INTO STEM HEIGHT AND BASAL AREA GROWTH MODELS FOR AFRICAN WHITE WOOD (TRIPLOCHITON SCLEROXYLON)

机译:在非洲白木(毛细对虾)的茎高和基底面积生长模型中合并皇冠尺寸

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摘要

Four crown dimensions (crown diameter, crown projection area, crown length and crown ratio) were each incorporated into nonlinear individual tree total height and basal area increment models for African white wood (Triplochiton scleroxylon K. Schum).The basic height/basal area growth model was formulated as a function of the tree size (i.e. total height or basal area), age and tree form (i.e. taper which is the ratio of diameter at breast height to total height). These increment models, with and without crown dimension were fitted to a modelling data set and the statistical significance of each of the crown dimensions was examined. All the models were then compared for predictive ability using an independent validation data set. The results obtained were similar for both the total height and basal area increment models. All the crown dimensions except crown projection area were found to be significant in the basic models (i.e. models without crown dimensions) in terms of model fit. However, for predictive ability, increment models (for both total height and basal area) with crown ratio term were found to have the smallest bias and the greatest prediction precision of all the models examined both with and without crown dimension. Therefore, for tree total height and basal area prediction of African white wood, models with added crown ratio term were found to be most appropriate.
机译:将四个树冠尺寸(树冠直径,树冠投影面积,树冠长度和树冠比例)分别纳入非洲白木(Triplochiton scleroxylon K.Schum)的非线性个体树总高度和基础面积增加模型中。基本高度/基础面积的增长模型根据树的大小(即总高度或基础面积),年龄和树的形态(即锥度,即乳房高度的直径与总高度的比)来制定。将具有和不具有冠尺寸的这些增量模型拟合到建模数据集,并检查每个冠尺寸的统计显着性。然后使用独立的验证数据集比较所有模型的预测能力。对于总高度和基础面积增加模型,获得的结果相似。在模型拟合方面,发现基本模型(即没有冠尺寸的模型)中除冠投影面积以外的所有冠尺寸都很重要。但是,对于预测能力,发现带有冠冠比率项的增量模型(总高度和基础面积都包括)在所有带有和不带有冠冠尺寸的模型中具有最小的偏差和最大的预测精度。因此,对于非洲白木的树高和树根总面积的预测,发现增加树冠比率项的模型是最合适的。

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