利用永久样地数据模拟东地中海地区油松林分的优势高度生长

IF 0.8 4区 农林科学 Q3 FORESTRY Forest Systems Pub Date : 2021-03-31 DOI:10.5424/FS/2021301-17687
Tammam Suliman, U. Berger, M. Maaten-Theunissen, E. Maaten, Wael Ali
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引用次数: 0

摘要

研究目的:目前,东地中海区域的森林管理主要是根据经验,而不是根据管理计划。为了支持这类规划的制定,本研究利用实际描述优势高度增长的基本年龄不变技术,开发并比较了叙利亚纯均匀年龄的棕松林分的立地指数方程。材料与方法:2008年和2016年在80个永久样地获取了林分高度和林龄数据,这些数据捕获了立地条件、林龄和林分密度的全范围变化。采用代数差分法(ADA)和广义代数差分法(GADA)对8个广义代数差分方程进行拟合,找出最能描述数据的方程。为此,61个永久图用于模型校准,19个图用于验证。主要结果:基于GADA方法的Sloboda方程在生物学可信性和模型准确性两方面表现最好。研究重点:该研究为东地中海地区生长的油松林分提供了可靠的分类和比较,从而可用于支持可持续森林管理规划。
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Modeling dominant height growth using permanent plot data for Pinus brutia stands in the Eastern Mediterranean region
Aim of study: At current, forest management in the Eastern Mediterranean region is largely based on experience rather than on management plans. To support the development of such plans, this study develops and compares site index equations for pure even-aged Pinus brutia stands in Syria using base-age invariant techniques that realistically describe dominant height growth. Materials and methods: Data on top height and stand age were obtained in 2008 and 2016 from 80 permanent plots capturing the whole range of variation in site conditions, stand age and stand density. Both the Algebraic Difference Approach (ADA) and the Generalized Algebraic Difference Approach (GADA) were used to fit eight generalized algebraic difference equations in order to identify the one which describes the data best. For this, 61 permanent plots were used for model calibration and 19 plots for validation. Main results: According to both biological plausibility and model accuracy, the so-called Sloboda equation based on the GADA approach showed the best performance. Research highlights: The study provides a solid classification and comparison of Pinus brutia stands growing in the Eastern Mediterranean region and can thus be used to support sustainable forest management planning.
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来源期刊
Forest Systems
Forest Systems FORESTRY-
CiteScore
1.40
自引率
14.30%
发文量
30
审稿时长
6-12 weeks
期刊介绍: Forest Systems is an international peer-reviewed journal. The main aim of Forest Systems is to integrate multidisciplinary research with forest management in complex systems with different social and ecological background
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