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Tree Biomass Equations for Naturally Regenerated Shortleaf Pine

机译:天然再生短叶松的树生物量方程

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Aboveground free-level and branch-level biomass component equations were fitted by nonlinear seemingly unrelated regression, for even-aged naturally regenerated shortleaf pine (Pinus echinata Mill.) in southeastern Oklahoma. Data were obtained from 46- to 53-year-old frees growing in stands that had previously been thinned to densities ranging from 50% of full stocking to overstocked unthinned stands. Stand density affected some of the parameter estimates for trees growing in thinned stands versus unthinned stands. Equations based on dbh alone gave biomass estimates that were not significantly different from those obtained with equations based on dbh, height, and/or crown width. The fitted tree-level biomass component equations were additive in the sense that predictions for biomass components were constrained by the estimation process to sum to total tree biomass. These equations can be used to estimate aboveground tree or tree component biomass for naturally regenerated shortleaf pine in the dbh range of 7-40 cm in southeastern Oklahoma and have potential for application in other shortleaf pine growing areas.
机译:对于俄克拉荷马州东南部的均匀年龄的自然再生短叶松树(松木松果),通过非线性看似无关的回归拟合了地上自由水平和分支水平的生物量组成方程。数据是从46到53岁的免费林中生长的,这些林以前稀疏到密度从满载的50%到积压的未稀疏林。林分密度影响在稀疏林和未稀疏林中生长的树木的一些参数估计值。仅基于dbh的方程得出的生物量估算值与使用基于dbh,高度和/或树冠宽度的方程获得的估算值没有显着差异。拟合的树级生物量成分方程式是可加的,因为对生物量成分的预测受估算过程的约束,以求和为总树木生物量。这些方程可用于估算俄克拉荷马州东南部7至40厘米d​​bh范围内自然再生的短叶松的地上树木或树木成分生物量,并有可能在其他短叶松生长地区应用。

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