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杉阔混交林自疏边界线研究

Self-thinning Line of Mixed Forests of Cunninghamia lanceolata and Broad-leaved Tree Species

  • 摘要:
    目的 正确揭示混交林自然稀疏机制,是实现森林可持续经营目标的基础。
    方法 本研究利用1991~2016年福建、江西和安徽省森林资源连续清查数据,采用线性回归分析、随机边界分析和分位数回归分析,研究树种混交、纬度变化和立地条件对杉阔混交林密度和生长之间自疏轨迹的影响规律。
    结果 相较于杉木纯林,杉阔混交林自疏线呈上移且趋于平缓的状态。不管采用何种拟合方式,杉阔混交林自疏线与纯林自疏线变化规律基本一致,未偏离-1.605。混交比例对杉阔混交林自疏斜率具有正向影响,纬度和立地条件具有负向影响。线性回归模型拟合得到的是混交林的林分平均密度,分位数回归拟合得到的最大林分密度线受分位数值的影响,随机边界分析可以避免主观选择自疏拟合数据的缺陷,是混交林最大密度线的最佳拟合方法。
    结论 杉阔混交林自疏轨迹与杉木纯林相一致,主要受混交比例、纬度和立地条件的影响,采用随机边界分析方法可以得到混交林最大林分密度,本研究可为杉阔混交林密度确定和调控提供实践指导。

     

    Abstract:
    Objective Revealing self-thinning mechanism of mixed forests is the basis for achieving forest sustainable management goal.
    Methods Based on the permanent plots of mixed forests of Cunninghamia lanceolata and broad-leaved tree species in Fujian, Jiangxi and Anhui provinces between 1991 and 2016, linear regression, random frontier analysis and quantile regression methods were used to study the effects of tree species mixing, latitude and site conditions on the self-thinning trajectory.
    Results Compared with pure Chinese fir stands, the self-thinning line of mixed forests of Cunninghamia lanceolata and broad-leaved tree species shifted upward and tended to be flat. Regardless of the fitted methods of self-thinning line, the trajectory of self-thinning line of mixed forests was basically consistent with the pure Chinese fir stand and did not deviate from -1.605. Mixing proportion had a positive effect on maximum size–density relationships, but latitude and site conditions had a negative effect. The linear regression analysis obtained the average stand density of mixed forests, while the quantile regression indicated the maximum forest density line based on quantile threshold. Stochastic frontier analysis can avoid the subjective selection of self-thinning fitting data and is the best fitting approach for the maximum stand density line of mixed forests.
    Conclusion Self-thinning trajectory of mixed forests of Cunninghamia lanceolata and broad-leaved tree species is consistent with pure Chinese fir stands, which was mainly affected by mixing proportion, latitude and site conditions. Stochastic frontier analysis is the best fitting approach for the maximum stand density line of mixed forests of Cunninghamia lanceolata and broad-leaved tree species. It can provide practical guidance for density control of mixed forests of Cunninghamia lanceolata and broad-leaved tree species.

     

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