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应用生态学报 ›› 2026, Vol. 37 ›› Issue (5): 1431-1438.doi: 10.13287/j.1001-9332.202605.001

• 研究论文 • 上一篇    下一篇

大兴安岭兴安落叶松次生林不同发育阶段的林分结构复杂性评价

王可欣, 梅雪松, 董灵波*   

  1. 东北林业大学林学院, 森林生态系统可持续经营教育部重点实验室, 哈尔滨 150040
  • 收稿日期:2026-01-22 接受日期:2026-03-04 出版日期:2026-05-18 发布日期:2026-11-18
  • 通讯作者: * E-mail: farrell0503@126.com
  • 作者简介:王可欣, 女, 2000年生, 硕士研究生。主要从事森林生态系统可持续经营研究。E-mail: 13846949545@163.com
  • 基金资助:
    十四五国家重点研发计划项目(2022YFD2200502)和黑龙江省头雁创新团队计划项目

Evaluation of stand structural complexity at different developmental stages in Larix gmelinii secondary forests of the Greater Khingan Mountains, China

WANG Kexin, MEI Xuesong, DONG Lingbo*   

  1. Ministry of Education Key Laboratory of Sustainable Forest Ecosystem Management, School of Forestry, Northeast Forestry University, Harbin 150040, China
  • Received:2026-01-22 Accepted:2026-03-04 Online:2026-05-18 Published:2026-11-18

摘要: 本研究以大兴安岭地区79块兴安落叶松次生林样地的调查数据为基础,从树种多样性、非空间结构和空间结构特征3个方面选取13项评价指标,采用近邻传播聚类算法对其发育阶段进行划分,并运用雷达图法对比评价全指标集(13项)和最小指标集(5项)在各发育阶段林分结构复杂性评价结果中的一致性,为大兴安岭兴安落叶松次生林全周期多功能经营提供理论依据。结果表明:制约兴安落叶松次生林不同发育阶段林分结构复杂性的关键指标为平均胸径(Dg)、优势树高(Ht)、密集度(C)、林分密度(N)和林分蓄积(V)共5项指标。近邻传播聚类算法将所有样地划分为3个发育阶段(阶段1、阶段2和阶段3),其中DgC随发育阶段呈显著递增趋势,NHt呈显著递减趋势,而V仅在阶段2和阶段3间差异显著。全指标集的评价结果表明,3个发育阶段的林分结构复杂性指数分别为0.18、0.22和0.31,而最小指标集的结果则为0.10、0.15和0.26,2种方法所得指数间呈显著正相关(r>0.55)。以最小指标集为标准,阶段1(N)和阶段2(Ht)中仅有1项指标表现较好,而阶段3中则有3项指标(DgHtV)达标。因此,兴安落叶松次生林结构复杂性随发育阶段逐步提升,且基于最小指标集的评价方法具有较好的可靠性,可根据制约各阶段结构发育的关键因子为森林经营提供针对性措施。

关键词: 发育阶段, 兴安落叶松, 林分结构复杂性, 评价指标

Abstract: Based on data from 79 plots of Larix gmelinii secondary forests in the Greater Khingan Mountains, we classified the developmental stages of the stands by using affinity propagation clustering algorithm with thirteen eva-luation indicators from three aspects including tree species diversity, non-spatial structure, and spatial structure characteristics. We then compared the consistency of the full indicator set (13 indicators) and the minimum indicator set (five indicators) in evaluating stand structural complexity across different developmental stages by radar chart analysis. The main aim was to provide a theoretical basis for full-cycle multi-functional management of L. gmelinii secondary forests in the Greater Khingan Mountains. The results showed that the key indicators constraining stand structural complexity were mean diameter at breast height (Dg), dominant tree height (Ht), density degree (C), stand density (N), and stand volume (V), totaling five indicators. The affinity propagation clustering algorithm divided all plots into three developmental stages (Stage 1, Stage 2, and Stage 3). Among these, Dg and C showed a significant increasing trend with developmental stage, while N and Ht exhibited a significant decreasing trend. There was a significant difference of V between Stage 2 and Stage 3. The evaluation results based on the full indicator set showed that the stand structural complexity indices for the three developmental stages were 0.18, 0.22, and 0.31, respectively, while those based on the minimum indicator set were 0.10, 0.15, and 0.26. The indices obtained from the two methods were positively correlated (r>0.55). Using the minimum indicator set as the stan-dard, only one indicator performed well in Stage 1 (N) and Stage 2 (Ht), while three indicators (Dg, Ht, and V) reached the standard in Stage 3. Therefore, the structural complexity of L. gmelinii secondary forests gradually increased across developmental stages. The evaluation method based on the minimum indicator set showed high reliability and could provide targeted measures for forest management according to the key factors constraining structural development at each stage.

Key words: developmental stage, Larix gmelinii, stand structure complexity, evaluation indicator