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生态学杂志 ›› 2026, Vol. 45 ›› Issue (5): 1489-1496.doi: 10.13292/j.1000-4890.202605.026

• 研究报告 • 上一篇    下一篇

间伐对华北落叶松人工林稳定性和林分内部状态的影响

王程,彭道黎*,陈铭捷


  

  1. (北京林业大学森林资源和环境管理国家林业和草原局重点实验室, 北京 100083)

  • 出版日期:2026-05-10 发布日期:2026-05-07

Effects of thinning on the stability and stand internal state of Larix gmelinii var. principis-rupprechtii plantation.

WANG Cheng, PENG Daoli*, CHEN Mingjie   

  1. (State Forestry and Grassland Administration Key Laboratory of Forest Resources and Environmental Management, Beijing Forestry University, Beijing 100083, China).
  • Online:2026-05-10 Published:2026-05-07

摘要: 探讨不同间伐强度下人工林林分状态和稳定性的变化规律,为人工林的可持续经营提供理论依据。以间伐强度为轻度(21%,LT)、中度(40%,MT)、重度(56%,HT)和未间伐(CK)的华北落叶松人工林为对象,选取林层数、角尺度、直径结构、林分拥挤度、Simpson指数、林分长势、健康木比例以及幼苗数量来表征林分结构与活力并调查相邻的环境类型,基于改进单位圆法解析不同间伐强度下林分状态差异,通过融合熵权与内外综合评价法,量化群落稳定性对间伐的响应。结果表明:(1)华北落叶松人工纯林的直径结构和林层较为单一,更新能力较差,大部分样地的林木处于均匀分布。重度间伐时林分拥挤度、林分长势以及林分健康最佳,中度间伐时林分的物种多样性最高。间伐后林分的累加性和均衡性均有所提升,林分状态的综合评价值从大到小排序为重度间伐(0.485)>中度间伐(0.414)>轻度间伐(0.400)>未间伐(0.275),各林分仍处于较差的状态。(2)由熵权法可知,林分状态和邻域环境所占林分稳定性的权重分别为82.3%和17.7%,表明在稳定性评价中,林分状态占据着主导作用。林分稳定性综合评价值从大到小的排序为重度间伐(0.547)>中度间伐(0.503)>轻度间伐(0.477)>未间伐(0.374)。林分状态和稳定性均随着间伐强度的增加而增加,但邻域环境指数差异较小,表明间伐可通过改善林分状态进而间接提高林分的稳定性。相对于邻域环境而言,林分状态是林分稳定性的主导因素。本研究显示重度间伐(56%)效果最佳,但在实际应用中应结合立地条件与经济目标,合理调整间伐强度,以兼顾生态与经济效益,推动林业可持续发展。


关键词: 间伐强度, 改进单位圆法, 林分质量评价, 林分稳定性

Abstract: Exploring the changes in stand structure and stability of forest plantations under different thinning intensities can provide theoretical basis for the sustainable management. In this study, four thinning intensities in Larix gmelinii var. principis-rupprechtii plantations in Saihanba, North China were established: light thinning (LT, 21%), moderate thinning (MT, 40%), heavy thinning (HT, 56%), and a control without thinning (CK). Stand structure and vitality were characterized using eight variables, including number of forest layers, angular scale, diameter structure, stand congestion, Simpson index, stand vigor, proportion of healthy trees, and seedling abundance, together with adjacent environmental types. An improved unit circle method was used to analyze the differences in stand conditions under different thinning intensities. A combined entropy weight-internal/external evaluation approach was used to quantify the response of community stability to thinning. The results showed that pure stands generally exhibited simple diameter structure and canopy stratification, with poor regeneration ability and a uniform spatial distribution of trees. Heavy thinning showed the best stand congestion, growth vigor, and health condition, while moderate thinning yielded the highest species diversity. Both additivity and equilibrium were improved after thinning, and the comprehensive evaluation of stand condition ranked as HT (0.485) > MT (0.414) > LT (0.400) > CK (0.275), indicating that all stands were at a relatively poor condition. According to the entropy weight analysis, stand condition and neighborhood environment contributed 82.3% and 17.7% of the total weight, respectively, suggesting that stand condition played a dominant role in stability assessment. The overall stability index ranked as HT (0.547) > MT (0.503) > LT (0.477) > CK (0.374). Both stand condition and stability improved with increasing thinning intensity, whereas neighborhood environmental differences were minor. Our results indicated that thinning enhanced stand stability primarily by improving stand condition. Although heavy thinning showed the best effect, thinning intensity should be reasonably adjusted according to site conditions and management objectives to balance ecological and economic benefits, thereby promoting sustainable forest development.


Key words: thinning intensity, improved unit circle method, stand quality assessment, stand stability