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长白山云冷杉针阔混交林天然更新空间分布格局及其异质性

李艳丽,杨华**,亢新刚,王妍,岳刚,沈林   

  1. (北京林业大学省部共建森林培育与保护教育部重点实验室, 北京 100083)
  • 出版日期:2014-02-18 发布日期:2014-02-18

Spatial heterogeneity of natural regeneration in a spruce-fir mixed broadleaf-conifer forest in Changbai Mountains.

LI Yan-li, YANG Hua, KANG Xin-gang, WANG Yan, YUE Gang, SHEN Lin   

  1. (Ministry of Education Key Laboratory for Silviculture and Conservation, Beijing Forestry University, Beijing 100083, China)
  • Online:2014-02-18 Published:2014-02-18

摘要:

2012年8月在长白山林区云冷杉针阔混交林中设置一块60 m×60 m典型更新样地, 采用地统计学的半方差函数分析方法、分形维数和Kriging插值方法,分析林下天然更新幼苗幼树的空间分布格局及其异质性.结果表明: 云冷杉针阔混交林更新层幼苗幼树以冷杉和色木槭为主,占更新总数的87.4%;样地中更新幼苗幼树呈聚集分布,聚集斑块最大半径为9.93 m;更新幼苗幼树之间具有很强的空间自相关性,其88.7%的变异由结构性因素(生物学、生态学特性和环境异质性)引起,11.3%的变异由随机性因素引起;更新幼苗幼树的空间分布表现出各向异性,南北方向上的分形维数最小, 异质性最高,东北-西南方向上的分形维数最大, 异质性最低;更新幼苗幼树树高比地径的空间异质性强;更新幼苗幼树地径和树高的空间自相关范围分别为29.97和31.86 m,随机因素和结构因素对其空间异质性的影响具有同等作用.
 

Abstract: Based on fieldwork on a plot of 60 m× 60 m in the Changbai Mountain area of Northeast China in August 2012, the spatial distribution pattern and heterogeneity of natural regeneration in the spruce-fir mixed broadleaf-conifer forest were analyzed using semi-variograms, fractal dimensions and Kriging interpolation methods. The results showed that Abies nephrolepis and Acer mono were the most common regeneration species, accounting for 87.4% of the total. The regeneration seedlings and saplings presented an aggregate distribution pattern with the biggest radius of 9.93 m. Distinct spatial autocorrelation existed among regeneration seedlings and saplings, with 88.7% of variation coming from structure factors (biological and ecological properties and  environmental heterogeneity) and 11.3% from random factors. The spatial distribution of the regeneration seedlings and saplings presented anisotropy, with the smallest fractal dimension and strongest spatial heterogeneity from north to south, and the highest fractal dimension and weakest spatial heterogeneity from northeast to southwest. The spatial heterogeneity of heights of seedlings and saplings was greater than that of root collar diameters. The distance of spatial autocorrelation for tree root collar diameters was 29.97 m, and that for heights was 31.86 m. Random factors and structure factors were found to contribute equally to the spatial heterogeneity.