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首页> 外文期刊>Canadian Journal of Forest Research >Spatial and temporal variability in forest growth in the Olympic Mountains, Washington: sensitivity to climatic variability
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Spatial and temporal variability in forest growth in the Olympic Mountains, Washington: sensitivity to climatic variability

机译:华盛顿奥林匹克山森林生长的时空变化:对气候变化的敏感性

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We compared annual basal area increment (BAI) at different spatial scales among all size classes and species at diverse locations in the wet western and dry northeastern Olympic Mountains. Weak growth correlations at small spatial scales (average R =0.084-0.406) suggest that trees are responding to local growth conditions. However, significant positive growth correlations between geographically adjacent forest types (R = 0.440-0.852) and between watersheds (R = 0.430) indicate that there is a commonoverarching growth-limiting factor (e.g., climate) that affects tree growth over large areas. The Sitka spruce (Picea sitchensis (Bong.) Carrière) forest type is the most sensitive to environmental change with the highest mean sensitivity (0.345), thehighest potential for annual growth change (mean BAI = 0.0047 m~2), and the highest growth variability (coefficient of variation = 0.498). In addition, this forest type is most likely to exhibit extreme positive growth responses (4.2% of years have BAI values 2 standard deviations above the mean). Low-elevation coniferous forests are relatively sensitive to changes in growth-limiting factors (in contrast to the traditional view) and may play an important role in storing carbon in a warmer climate.
机译:我们比较了奥林匹克西部湿润和东北干燥山区不同地区所有大小等级和物种在不同空间尺度上的年度基础面积增加量(BAI)。在较小的空间尺度上,较弱的生长相关性(平均R = 0.084-0.406)表明树木正在响应当地的生长条件。但是,地理上相邻的森林类型之间(R = 0.440-0.852)和流域之间(R = 0.430)的显着正相关性表明存在一个共同的总体生长限制因素(例如气候)会影响大面积树木的生长。锡特卡云杉(Picea sitchensis(Bong。)Carrière)森林类型对环境变化最敏感,平均敏感度最高(0.345),年生长变化潜力最高(平均BAI = 0.0047 m〜2),并且生长最高变异性(变异系数= 0.498)。此外,这种森林类型最有可能表现出极端的正增长响应(4.2%的年BAI值比平均值高2个标准差)。低海拔的针叶林对限制生长的因素的变化比较敏感(与传统观点相反),并且在温暖的气候中储存碳可能起重要作用。

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