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Finite Element Modelling of Central Leader and Vase Shape Cherry Trees

机译:中央龙头和花瓶形樱桃树的有限元建模

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Central leader and vase form tree models were built using Finite Element Modelling (FEM). Their main characteristics were chosen to be the same. To get comparable results to real values, acceleration versus time curves of the two types of real trees were processed using FFT method to determine their natural frequencies. The natural frequencies measured on real trees and calculated for the models have shown good similarity. The models were virtually exposed to the effect of horizontal forced vibrationin the frequency range of 0-20 Hz. Acceleration-frequency curves were calculated and drawn to find the best frequency values for the highest accelerations and also to see their differences in the limb. For the same purpose, the direction of shaking wasalso changed. It was found that for the central leader limb shape multidirectional shaking would bring uniform detachment, while for the vase form trees, even the unidirectional shakers are appropriate. Real trees were also shaken and their acceleration-frequency curves were compared with the values of the FEMs. The resultant good similarity proves the ability of the models. The acceleration values achieved in the vase form models were much higher than for the central leader type. The acceleration-frequency curve of the shaker unit can be used to find the best frequency for shaking.
机译:使用有限元建模(FEM)构建中央领导者和花瓶形式树模型。选择它们的主要特征是相同的。为了获得与真实值可比的结果,使用FFT方法处理了两种类型的真实树的加速度与时间曲线,以确定其固有频率。在实树上测量并为模型计算的自然频率显示出良好的相似性。这些模型实际上暴露于0-20 Hz频率范围内的水平强制振动的影响。计算并绘制了加速度-频率曲线,以找到最高加速度的最佳频率值,并查看它们在肢体中的差异。为了相同的目的,也改变了摇动的方向。已经发现,对于中央领导肢体形状,多向摇动会带来均匀的分离,而对于花瓶状的树木,甚至单向摇动也是合适的。还摇动了真实的树木,并将其加速频率曲线与FEM的值进行了比较。产生的良好相似性证明了模型的能力。在花瓶形式的模型中获得的加速度值远高于中央龙头类型。振动器单元的加速度-频率曲线可用于找到最佳振动频率。

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