城市乔木根干过渡区的应变模式

Q2 Agricultural and Biological Sciences
K. Beezley, G. Dahle, Jason W. Miesbauer, D. DeVallance
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引用次数: 4

摘要

树木在其生命周期中受到机械载荷或面临过早死亡。由树冠截获并在整个树木中传递的负荷所产生的压力非常重要,不仅对树木的生存,而且对附近人类的安全和福祉也很重要。以15棵成熟针栎树(Quercus palustris Muenchh.)为研究对象,进行了静载试验。我们应用静态负载测试将树木从自然位置倾斜0.1°。我们使用数字图像相关系统来绘制根-茎过渡区背风根、迎风根和切向根的应变。结果表明,背风方向和迎风方向的平均最大应变值相近,切向方向的平均最大应变值较低。背风方向发生压应变,迎风方向发生拉应变,切向方向同时发生拉应变和压应变。这些信息使树木学和植物科学部门更好地了解载荷如何在树木中移动,并将进一步加强树木风险评估和根区管理协议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Strain Patterns Across the Root-Stem Transition Zone in Urban Trees
Trees are subjected to mechanical loading during their life span or face premature mortality. The strain resulting from loads intercepted by the canopy and transferred throughout the tree is of significant importance, not only for the survival of the tree, but for the safety and well-being of the human population found in close proximity. To test the function of tree orientation to an applied load, static load tests were conducted on 15 mature pin oak trees (Quercus palustris Muenchh.). We applied the static load tests to tilt the trees 0.1° from natural position. We used a digital image correlation system to map strain in the leeward, windward, and tangential roots in the root-stem transition zone. Results indicate that mean maximum strain magnitudes are similar in the leeward and windward orientations and lower on the tangential orientation. The leeward orientation experienced compressive strain, the windward orientation experienced tensile strain, and the tangential orientation had both tensile and compressive strain. This information provides the arboricultural and plant science sectors with a better understanding of how loading force moves through trees and will further enhance tree risk assessment and root zone management protocols.
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来源期刊
Arboriculture and Urban Forestry
Arboriculture and Urban Forestry Agricultural and Biological Sciences-Forestry
CiteScore
1.70
自引率
0.00%
发文量
25
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