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The effect of root architecture and root loss through trenching on the anchorage of tropical urban trees (Eugenia grandis Wight)

机译:根系结构和挖沟造成的根系流失对热带城市树木(Eugenia grandis Wight)锚地的影响

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Eugenia grandis (Wight) is grown in urban environments throughout Malaysia and root systems are often damaged through trenching for the laying down of roads and utilities. We investigated the effect of root cutting through trenching on the biomechanics of mature E. grandis. The force necessary to winch trees 0.2 m from the vertical was measured. Trenches were then dug at different distances (1.5, 1.0 and 0.5 m) from the trunk on the tension side of groups of trees. Each tree was winched sideways again and the uprooting force recorded. No trenches were made in a control group of trees which were winched until failure occurred. Critical turning moment (TMcrit) and tree anchorage rotational stiffness (TARS) before and after trenching were calculated. Root systems were extracted for architectural analysis and relationships between architectural parameters and TMcrit and TARS were investigated. No differences were found between TMcrit and trenching distance. However, in control trees and trees with roots cut at 1.5 m, significant relationships did exist between both TMcrit and TARS with stem dimensions, rooting depth and root plate size. TARS was significantly decreased when roots were cut at 0.5 m only. Surprisingly, no relationships existed between TMcrit and TARS with any root system parameter when trenching was carried out at 0.5 or 1.0 m. Our study showed that in terms of TARS and TMcrit, mechanical stability was not greatly affected by trenching, probably because rooting depth close to the trunk was a major component of anchorage.
机译:Eugenia grandis(Wight)在整个马来西亚的城市环境中生长,根系经常因挖沟铺设道路和公用设施而受到破坏。我们研究了通过挖沟切根对成熟大肠埃希氏菌的生物力学的影响。测量了从垂直方向将树木绞起0.2 m所需的力。然后从树木组张紧侧的树干上挖出不同距离(1.5、1.0和0.5 m)的沟槽。每棵树再次侧向弯曲,并记录了连根拔起的力量。对照组的树木没有开沟,这些树被绞盘直到发生故障。计算了挖沟前后的临界转弯矩(TM )和树锚固旋转刚度(TARS)。提取根系统进行体系分析,研究体系参数与TM crit 和TARS之间的关系。在TM crit 和挖沟距离之间没有发现差异。但是,在对照树和根切在1.5 m处的树中,TM crit 和TARS之间确实存在着茎尺寸,生根深度和根板大小的显着关系。仅在0.5 m处切根时,TARS显着降低。令人惊讶的是,当在0.5或1.0 m处进行挖沟时,TM crit 和TARS与任何根系参数之间都没有关系。我们的研究表明,就TARS和TM crit 而言,挖沟对机械稳定性的影响不大,可能是因为靠近主干的生根深度是锚固的主要组成部分。

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