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Allometric Equations for Aboveground and Belowground Biomass Estimations in an Evergreen Forest in Vietnam

机译:越南常绿森林地上和地下生物量估计的等速方程

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摘要

Allometric regression models are widely used to estimate tropical forest biomass, but balancing model accuracy with efficiency of implementation remains a major challenge. In addition, while numerous models exist for aboveground mass, very few exist for roots. We developed allometric equations for aboveground biomass (AGB) and root biomass (RB) based on 300 (of 45 species) and 40 (of 25 species) sample trees respectively, in an evergreen forest in Vietnam. The biomass estimations from these local models were compared to regional and pan-tropical models. For AGB we also compared local models that distinguish functional types to an aggregated model, to assess the degree of specificity needed in local models. Besides diameter at breast height (DBH) and tree height (H), wood density (WD) was found to be an important parameter in AGB models. Existing pan-tropical models resulted in up to 27% higher estimates of AGB, and overestimated RB by nearly 150%, indicating the greater accuracy of local models at the plot level. Our functional group aggregated local model which combined data for all species, was as accurate in estimating AGB as functional type specific models, indicating that a local aggregated model is the best choice for predicting plot level AGB in tropical forests. Finally our study presents the first allometric biomass models for aboveground and root biomass in forests in Vietnam.
机译:异速回归模型被广泛用于估算热带森林生物量,但是在模型准确性和实施效率之间取得平衡仍然是一个重大挑战。另外,尽管存在许多关于地上质量的模型,但很少有关于根的模型。我们分别基于越南常绿森林中的300种(共45种)和40种(共25种)样本树,开发了地上生物量(AGB)和根生物量(RB)的异速方程。将这些本地模型的生物量估算值与区域和泛热带模型进行了比较。对于AGB,我们还将区分功能类型的局部模型与聚合模型进行了比较,以评估局部模型所需的特异性程度。除了胸高(DBH)和树高(H)的直径外,木材密度(WD)是AGB模型中的重要参数。现有的泛热带模型导致对AGB的估计最多增加了27%,而RB被高估了近150%,这表明在地块级别上本地模型的准确性更高。我们的功能组聚合了本地模型,该模型结合了所有物种的数据,在估算AGB方面与特定于功能类型的模型一样准确,这表明本地聚合模型是预测热带森林中地积水平AGB的最佳选择。最后,我们的研究提出了越南森林中地上和根系生物量的第一个异速生物量模型。

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