A Nonlinear Mixed-Effects Height-Diameter Model with Interaction Effects of Stand Density and Site Index for <i>Larix olgensis</i> in Northeast China

Tree height is a basic input variable in various forest models, such as growth and yield models, biomass models, and carbon budget models, which serve as very important tools for the informed decision-making in forestry. The height-diameter model is the most important component of the growth and yie...

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Main Authors: Xiaofang Zhang, Liyong Fu, Ram P. Sharma, Xiao He, Huiru Zhang, Linyan Feng, Zeyu Zhou
Format: Article
Language:English
Published: MDPI AG 2021-10-01
Series:Forests
Subjects:
Online Access:https://www.mdpi.com/1999-4907/12/11/1460
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author Xiaofang Zhang
Liyong Fu
Ram P. Sharma
Xiao He
Huiru Zhang
Linyan Feng
Zeyu Zhou
author_facet Xiaofang Zhang
Liyong Fu
Ram P. Sharma
Xiao He
Huiru Zhang
Linyan Feng
Zeyu Zhou
author_sort Xiaofang Zhang
collection DOAJ
description Tree height is a basic input variable in various forest models, such as growth and yield models, biomass models, and carbon budget models, which serve as very important tools for the informed decision-making in forestry. The height-diameter model is the most important component of the growth and yield models and forest simulators. We developed the nonlinear mixed-effects height-diameter model with the interaction effects of stand density and site index introduced using data from 765 <i>Larix olgensis</i> trees in Jingouling forest farm of the Wangqing Forest Bureau in northeast China. Among the various basic versatile functions evaluated, a simple exponential growth function fitted the data adequately well, and this was then expanded through the introduction of the variables describing the interaction effects of the stand density and site index on the height-diameter relationship. Sample plot-level random effects were included into this model through mixed-effects modeling. The results showed that the random effect of the stand density on the height-diameter relationship was substantially different at different classes of the site index, and the random effect of the site index was different for the different stand density classes. The nonlinear mixed-effects (NLME) height-diameter model coping with the interaction effects of the stand density and site index had a better performance than those of the NLME models with the random effect of the single variable of stand density or site index. To conclude, the inclusion of the interaction effects of stand density and site index could significantly improve the prediction accuracy of the height-diameter model for <i>Larix olgensis</i> Henry. The proposed model with the interactive random effects included can be applied for the accurate prediction of <i>Larix olgensis</i> tree height in northeast China.
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spelling doaj.art-c39ce2beaf694478ba1fc453f31e98b12023-11-22T23:24:03ZengMDPI AGForests1999-49072021-10-011211146010.3390/f12111460A Nonlinear Mixed-Effects Height-Diameter Model with Interaction Effects of Stand Density and Site Index for <i>Larix olgensis</i> in Northeast ChinaXiaofang Zhang0Liyong Fu1Ram P. Sharma2Xiao He3Huiru Zhang4Linyan Feng5Zeyu Zhou6Research Institute of Forest Resource Information Techniques, Chinese Academy of Forestry, Beijing 100091, ChinaResearch Institute of Forest Resource Information Techniques, Chinese Academy of Forestry, Beijing 100091, ChinaInstitute of Forestry, Tribhuwan University, Kathmandu 44600, NepalResearch Institute of Forest Resource Information Techniques, Chinese Academy of Forestry, Beijing 100091, ChinaKey Laboratory of Forest Management and Growth Modeling, National Forestry and Grassland Administration, Beijing 100091, ChinaResearch Institute of Forest Resource Information Techniques, Chinese Academy of Forestry, Beijing 100091, ChinaResearch Institute of Forest Resource Information Techniques, Chinese Academy of Forestry, Beijing 100091, ChinaTree height is a basic input variable in various forest models, such as growth and yield models, biomass models, and carbon budget models, which serve as very important tools for the informed decision-making in forestry. The height-diameter model is the most important component of the growth and yield models and forest simulators. We developed the nonlinear mixed-effects height-diameter model with the interaction effects of stand density and site index introduced using data from 765 <i>Larix olgensis</i> trees in Jingouling forest farm of the Wangqing Forest Bureau in northeast China. Among the various basic versatile functions evaluated, a simple exponential growth function fitted the data adequately well, and this was then expanded through the introduction of the variables describing the interaction effects of the stand density and site index on the height-diameter relationship. Sample plot-level random effects were included into this model through mixed-effects modeling. The results showed that the random effect of the stand density on the height-diameter relationship was substantially different at different classes of the site index, and the random effect of the site index was different for the different stand density classes. The nonlinear mixed-effects (NLME) height-diameter model coping with the interaction effects of the stand density and site index had a better performance than those of the NLME models with the random effect of the single variable of stand density or site index. To conclude, the inclusion of the interaction effects of stand density and site index could significantly improve the prediction accuracy of the height-diameter model for <i>Larix olgensis</i> Henry. The proposed model with the interactive random effects included can be applied for the accurate prediction of <i>Larix olgensis</i> tree height in northeast China.https://www.mdpi.com/1999-4907/12/11/1460stand density effectsite index effectheight-diameter allometryheight prediction accuracybasic versatile function
spellingShingle Xiaofang Zhang
Liyong Fu
Ram P. Sharma
Xiao He
Huiru Zhang
Linyan Feng
Zeyu Zhou
A Nonlinear Mixed-Effects Height-Diameter Model with Interaction Effects of Stand Density and Site Index for <i>Larix olgensis</i> in Northeast China
Forests
stand density effect
site index effect
height-diameter allometry
height prediction accuracy
basic versatile function
title A Nonlinear Mixed-Effects Height-Diameter Model with Interaction Effects of Stand Density and Site Index for <i>Larix olgensis</i> in Northeast China
title_full A Nonlinear Mixed-Effects Height-Diameter Model with Interaction Effects of Stand Density and Site Index for <i>Larix olgensis</i> in Northeast China
title_fullStr A Nonlinear Mixed-Effects Height-Diameter Model with Interaction Effects of Stand Density and Site Index for <i>Larix olgensis</i> in Northeast China
title_full_unstemmed A Nonlinear Mixed-Effects Height-Diameter Model with Interaction Effects of Stand Density and Site Index for <i>Larix olgensis</i> in Northeast China
title_short A Nonlinear Mixed-Effects Height-Diameter Model with Interaction Effects of Stand Density and Site Index for <i>Larix olgensis</i> in Northeast China
title_sort nonlinear mixed effects height diameter model with interaction effects of stand density and site index for i larix olgensis i in northeast china
topic stand density effect
site index effect
height-diameter allometry
height prediction accuracy
basic versatile function
url https://www.mdpi.com/1999-4907/12/11/1460
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