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Growth and yield models for eucalyptus stands obtained by differential equations
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Escola Superior de Agricultura "Luiz de Queiroz"
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Programa de Pós-Graduação
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The main purpose of this study was to assess nonlinear models generated by integrating the basal area growth rate to estimate the growth and yield of forest stands. The
database was collected from permanent sample units, in Paraopeba county, in the state of
Minas Gerais, Brazil. The stands were represented by Eucalyptus camaldulensis × Eucalyptus
urophylla hybrid trees, with 3 × 3 meters of spacing. The data were divided into two groups: fitting and validating databases. Two nonlinear models (Strategy A and Strategy B) were developed
using differential equations to estimate the basal area growth and yield of the sample units. The
logistic model was fitted to estimate the volumetric yield as a function of age, site index and
basal area. The efficiency of the systems generated by logistic model and models obtained by
differential equations (Strategy A and Strategy B) was also compared to the efficiency of the
system estimated by the Clutter model (Strategy C). The projection models used to estimate
basal area obtained by differential equations were compatible with forest growth and yield, and
the logistic model with covariates was compatible with volumetric growth and yield. Strategy
A and Strategy B generated different thinning and harvesting options for different site indices,
which is biologically consistent.
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MENDONÇA, A. R. de et al. Growth and yield models for eucalyptus stands obtained by differential equations. Scientia Agricola, Piracicaba, v. 74, n. 5, Sept.Oct. 2017.
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Exceto quando indicado de outra forma, a licença deste item é descrita como Attribution 4.0 International

