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A method for measuring the forces acting on a tree trunk using strain gauges

机译:一种测量使用应变仪测量在树干上的力的方法

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The wind force acted on a tree constantly changes in magnitude, direction, and distribution. We developed a method to measure simultaneously the amount of force (F), centroid of the distributed force (C), and direction of force (D) on a tree trunk using four strain gauges. F and C were estimated from the difference in the bending moments at two different positions along the long axis of the stem. D was estimated using the difference in the sensor outputs at two different radial positions at the same height. In principle, the two strain gauges should be oriented precisely 90° apart; however, this is unrealistic on an actual tree trunk. To calculate D, we developed a new method to detect the radial position and modulus of elasticity of each strain gauge after attaching it. We conducted three types of experiment. First, we loaded a wood pole with weights arranged in 11 patterns to test the accuracies of F and C for a distributed load. Next, we applied tensile forces to the wood pole and an evergreen conifer sapling from eight directions to test the accuracy of D, F, and C. On average, estimation errors were 2% for both the distributed load and circumferential tensile load. Our method can estimate F, C, and D precisely, even if the wood is uneven and the strain gauges are not aligned. This is a great advantage for field wind force measurements.
机译:在树上作用的风力不断变化,方向和分布。我们开发了一种同时测量的方法,使用四个应变仪在树干上的分布力(c),武力方向(d)和力方向进行测量。从沿着杆的长轴的两个不同位置处估计F和C估计弯矩的差异。使用在相同高度的两个不同径向位置处的传感器输出的差异估计D。原则上,两个应变仪应均匀地定向90°;然而,这在实际的树干上是不现实的。为了计算D,我们开发了一种在附着后检测每个应变仪的每个应变计的径向位置和弹性模量。我们进行了三种类型的实验。首先,我们装载了一个带有11个模式的重量的木杆,以测试分布式负载的F和C的精度。接下来,我们将拉伸力施加到木杆和常绿针叶树树苗,从8个方向测试D,F和C的精度。平均而言,估计误差是估计误差。分布式负载和圆周拉伸载荷的2%。我们的方法可以精确地估计F,C和D,即使木材不均匀,应变仪不对齐。这对于现场风力测量来说是一个很大的优势。

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