Preliminary results of a novel approach to assess the fundamental sway frequency of trees

Francesco Zanotto, L. Marchi, S. Grigolato
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Abstract

Trees in the urban context provide several environmental services. The current climate change crisis is seriously compromising the health of trees in urban and periurban areas leading to an increment of tree collapses. As a consequence, there is high risk of damage to urban infrastructures and risk for the safety of the people. Preventing tree failure and assessing the tree stability is a current challenge to maintain the ecosystem services provided by the trees in urban context but at the same time to guarantee the well-being of the people. Several methods and instruments are used to assess the stability of trees, among them, the dynamic analyses methods monitor the behaviour of the tree considering it as an object that sways in a dynamic manner. That behaviour can be described with several dynamic properties like the fundamental sway frequencies, a key-property to understand the motion of the tree under wind loads. The purpose of this paper is to present a novel approach to measure the dynamic response of a tree. The method is based on the assessment of the sway fundamental frequency under free vibration without notable external forces, using a non-destructive method consisting of high-sensitivity accelerometers. The method used to rigidly attach the sensors without both provoking any damages to the tree and compromising the data acquisition was improved several times. Due to the thickness of the bark of one sample in the first test the method didn't correctly measure the fundamental sway frequencies and a few enhancements have been made before the other tests. In the second test each tree was tested using three accelerometers fixed on the surface of the tree through a 3D printed support, a couple of omega shape steel bars and a ratchet strap. The technique was then tested on seven different open-grown broadleaf trees. Results of the spectral analyses shows that a reliable estimation of the peak values under free vibration and without any artificial excitations can be achieved. Moreover, the experimental design of the method allows to monitor the fundamental sway frequency rapidly and without provoking damage to the bark or the sapwood of the tree.
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一种评估树木基本摆动频率的新方法的初步结果
城市环境中的树木提供了几种环境服务。当前的气候变化危机严重损害了城市和城郊地区树木的健康,导致树木倒塌的增加。因此,城市基础设施受到破坏的风险很高,人民的安全也面临风险。预防树木衰竭和评估树木稳定性是当前城市环境中树木提供生态系统服务的挑战,同时也保证了人们的福祉。几种方法和工具被用来评估树木的稳定性,其中,动态分析方法监测树木的行为,将其视为一个动态摇摆的对象。这种行为可以用一些动态特性来描述,比如基本摆动频率,这是理解树在风荷载下运动的关键特性。本文的目的是提出一种测量树木动态响应的新方法。该方法基于无明显外力作用下自由振动下的摆动基频评估,采用由高灵敏度加速度计组成的非破坏性方法。在不损害采油树和影响数据采集的情况下,将传感器固定在一起的方法得到了几次改进。由于第一次测试中一个样品的树皮厚度,该方法没有正确测量基本摇摆频率,并且在其他测试之前做了一些改进。在第二次测试中,每棵采油树通过3D打印支架、几根欧米茄形钢筋和棘轮带固定在采油树表面,使用三个加速度计进行测试。这项技术随后在7种不同的阔叶树上进行了测试。频谱分析结果表明,在自由振动和不受人为激励的情况下,可以获得可靠的峰值估计。此外,该方法的实验设计允许快速监测基本摆动频率,而不会对树皮或树木的边材造成损害。
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