首页> 外文OA文献 >Long-term drought sensitivity of trees in second-growth forests in a humid region
【2h】

Long-term drought sensitivity of trees in second-growth forests in a humid region

机译:潮湿地区次生林树木的长期干旱敏感性

摘要

Classical field methods of reconstructing drought using tree rings in humid, temperate regions typically target old trees from drought-prone sites. This approach limits investigators to a handful of species and excludes large amounts of data that might be useful, especially for coverage gaps in large-scale networks. By sampling in more “typical” forests, network density and species diversity would increase in ways that could potentially improve reconstructions. Ten nonclassical tree-ring chronologies derived from randomly selected trees, trees from logged forests, or both were compared to more classical chronologies and an independent regional drought reconstruction to determine their usefulness for dendrohydroclimatic research. We find that nonclassical chronologies are significantly correlated to classical chronologies and reconstructed drought over the last 2–3 centuries. While nonclassical chronologies have spectral properties similar to those from classical dendroclimatic collections, they do lack spectral power at lower frequencies that are present in the drought reconstruction. Importantly, our results show that tree growth is strongly dependent on moisture availability, even for small, randomly selected trees in cut forests. These results indicate that there could be more data available in areas with few current tree-ring collections for studying climate history and that drought plays an important role in humid forests.
机译:在潮湿,温带地区使用树环重建干旱的经典野外方法通常针对易干旱地区的老树。这种方法将研究人员限制在少数几个物种上,并且排除了可能有用的大量数据,特别是对于大规模网络中的覆盖缺口而言。通过在“典型”森林中取样,网络密度和物种多样性将以可能改善重建的方式增加。将从随机选择的树木,砍伐的森林中的树木或两者中选出的十个非经典树轮年表与更经典的年表和独立的区域干旱重建进行比较,以确定它们对树突水文气候研究的有用性。我们发现,非古典年代与古典年代和过去2-3个世纪的干旱重建有显着相关性。尽管非古典年代学的光谱特性与经典树状气候集合的光谱特性相似,但它们确实缺乏干旱重建中出现的较低频率的光谱功率。重要的是,我们的结果表明,树木的生长在很大程度上取决于水分的供应,即使是砍伐森林中随机选择的小型树木也是如此。这些结果表明,在目前没有树木年轮收集的地区,可能有更多数据可用于研究气候历史,干旱在潮湿的森林中起着重要作用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号