...
首页> 外文期刊>Trees. Structure and Function >Analyzing key factors of roots and soil contributing to tree anchorage of Pinus species
【24h】

Analyzing key factors of roots and soil contributing to tree anchorage of Pinus species

机译:对疙瘩物种树木锚定的根与土壤的关键因素分析

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Tree anchorage is a primary function for plant survival which may reach its limit under extreme conditions such as windstorms. To better understand the processes and influential factors underlying tree anchorage, we analyzed the mechanical effects of root morphology and the material properties of roots and soil on the tree-overturning process with the recently developed finite element model RootAnchor. The root system was represented by a simplified 3D root pattern derived from an ensemble average of seven measured root systems of 19-year-old Pinus pinaster grown in sandy spodosol. Soil properties were measured by direct shear tests. Taguchi orthogonal arrays were used to examine the sensitivity of the geometric and material factors of roots and soil to tree anchorage. Tree anchorage was characterized by anchorage strength TMc and anchorage stiffness K0. Using a small number of numerical experiments, the sensitivity analysis prioritized only two key factors contributing to tree anchorage among the 34 factors considered. The results showed root morphological traits that played a dominant role in the material properties of roots and soil in tree anchorage. Taproot depth, the dimensions of the Zone of Rapid Taper (ZRT) and basal diameter of the windward shallow roots were the key factors contributing to TMc (variations & 8%). The dimensions of the taproot, root and soil stiffness, and the basal diameter of the leeward shallow roots were the most active factors for KO (variations & 10%). These results provide insight into simplified tree anchorage expressions for the prediction of wind-induced uprooting.
机译:树木锚定是植物存活的主要功能,这可能在风暴等极端条件下达到其极限。为了更好地理解树木锚定的过程和影响因素,我们分析了根形态的机械效应以及根和土壤的材料特性与最近开发的有限元模型人的树木倾覆过程。根系系统由衍生自七个测量的Ropast System的集合平均值的简化的3D根图案表示,其19岁的Pinus Pinaster在桑迪斯波糖醇中生长。通过直接剪切试验测量土壤性质。 Taguchi正交阵列用于检查根和土壤的几何和材料因子对树木锚定的敏感性。树木锚固的特征在于锚固强度TMC和锚固刚度K0。使用少数数值实验,灵敏度分析仅优先考虑了两种考虑的树木锚定的两个关键因素。结果表明,在树木锚定的根和土壤的材料特性中发挥了显着作用的根形态特征。根尖深度,快速锥度(Zrt)区域的尺寸和迎风浅根的基底直径是有助于TMC的关键因素(变化& 8%)。 Taproot,根和土壤刚度的尺寸,以及背风浅根的基础直径是KO(变化& 10%)的最活跃因子。这些结果为预测风引起的拔除的简化树锚定表达提供了深入的洞察力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

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