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Segmented taper equations with crown ratio and stand density for Dahurian Larch (Larix gmelinii) in Northeastern China 被引量:14

Segmented taper equations with crown ratio and stand density for Dahurian Larch (Larix gmelinii) in Northeastern China
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摘要 Segmented taper equation was selected to model stem profile of Dahurian larch (Larix gmelinii Rupr.). The data were based on stem analysis of 74 trees from Dailing Forest Bureau in Heilongjiang Province, Northeastern China. Two taper equations with crown ratio and stand basal area were derived from the Max and Burkhart’s (1976) taper equation. Three taper equations were evaluated: (1) the original equation, (2) the original equation with crown ratio, and (3) the original equation with basal area. SAS NLIN and SYSNLIN procedures were used to fit taper equations. Fit statistics and cross-validation were used to evaluate the accuracy and precision of these models. Parameter estimates showed that the original equation with inclusion of crown ratio and basal area variables provided significantly different parameter estimates with lower standard errors. Overall fit statistics indicated that the root mean square error (RMSE) for diameter outside and inside bark decreased respectively by 10% and 7% in the original model with crown ratio and by 12% and 7.2% in the original model with basal area. Cross-validation further confirmed that the original equation with inclusion of crown ratio and basal area variables provided more accurate predictions at the lower section (relative heights, 10%) and upper section (relative heights, 50%) for both outside and inside bark diameters. Segmented taper equation was selected to model stem profile of Dahurian larch (Larix gmelinii Rupr.). The data were based on stem analysis of 74 trees from Dailing Forest Bureau in Heilongjiang Province, Northeastern China. Two taper equations with crown ratio and stand basal area were derived from the Max and Burkhart’s (1976) taper equation. Three taper equations were evaluated: (1) the original equation, (2) the original equation with crown ratio, and (3) the original equation with basal area. SAS NLIN and SYSNLIN procedures were used to fit taper equations. Fit statistics and cross-validation were used to evaluate the accuracy and precision of these models. Parameter estimates showed that the original equation with inclusion of crown ratio and basal area variables provided significantly different parameter estimates with lower standard errors. Overall fit statistics indicated that the root mean square error (RMSE) for diameter outside and inside bark decreased respectively by 10% and 7% in the original model with crown ratio and by 12% and 7.2% in the original model with basal area. Cross-validation further confirmed that the original equation with inclusion of crown ratio and basal area variables provided more accurate predictions at the lower section (relative heights, 10%) and upper section (relative heights, 50%) for both outside and inside bark diameters.
机构地区 College of Forestry
出处 《Journal of Forestry Research》 SCIE CAS CSCD 2011年第3期347-352,共6页 林业研究(英文版)
基金 This study was supported by the National Natural Science Foundation of China(30972363) Special Fund for For-estry-Scientific Research in the Public Interest(201004026) China Postdoctoral Science Foundation(200902362,20100471014) the Fun-damental Research Funds for the Central Universities(DL10CA06) SRF for ROCS,SEM.
关键词 basal area crown ratio Larix gmelinii nonlinear regression taper equations basal area crown ratio Larix gmelinii nonlinear regression taper equations
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  • 1Bi H. 2000. Trigonometric variable-form taper equations for Australian eucalyptus. For Sci, 46: 397-409. 被引量:1
  • 2Brooks JR, Jiang L, Clark A. 2007. Compatible stem taper, volume, and weight equations for young longleaf pine plantations in Southwest Georgia. South J Appl For, 31(4): 187-191. 被引量:1
  • 3Brooks JR, Jiang L, Ozcelik R. 2008. Compatible stem volume and taper equations for Brutian Pine, Taurus Cedar, and Taurus Fir in Turkey. For EcolManage, 256: 147-151. 被引量:1
  • 4Fang Z, Borders BE, Bailey RL. 2000. Compatible volume taper models for loblolly and slash pine based on system with segmented-stem form factors. ForSci, 46: 1-12. 被引量:1
  • 5Farrar RMJr. 1987. Stem-profile functions for predicting multiple-product volumes in natural longleaf pines. South JAppl For, 11(3): 161-167. 被引量:1
  • 6Jiang L, Brooks JR. 2008. Taper, volume, and weight equations for red pine in West Virginia. North JApplFor, 25: 151-153. 被引量:1
  • 7Jiang L, Brooks JR, Wang J. 2005. Compatible taper and volume equations for yellow-poplar in West Virginia. For Ecol Manage, 213: 399--409. 被引量:1
  • 8Jiang L, Brooks JR, Hobbs GR. 2007. Using crown ratio in yellow-poplar compatible taper and volume equations. North JAppl For, 24: 271-275. 被引量:1
  • 9Kozak A. 1988. A variable-exponent taper equation. Can J For Res, 18: 1363-1368. 被引量:1
  • 10Kozak A (1997) Effects of multicollinearity and autocorrelation on the variable-exponent taper functions. Can JFor Res, 27:619-629. 被引量:1

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