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首页> 外文期刊>Transactions of the ASABE >Simulation study of citrus tree canopy motion during harvesting using a canopy shaker.
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Simulation study of citrus tree canopy motion during harvesting using a canopy shaker.

机译:使用树冠振动器进行柑橘树冠运动的模拟研究。

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摘要

Current canopy shaker harvesting machines were designed and optimized based on experimental studies about their fruit removal efficiency. To further improve the performance of canopy shaker harvesting machines, a better understanding of the interaction between the shaker and the tree is needed. Simulation studies for an entire tree or fruit-stem subsystems are available for trunk shaker mechanical harvesters, but no such study has been reported using a canopy shaker. The goal of this study was to develop and evaluate a simulation framework for predicting the interaction between the tree and the canopy shaker using finite element methods. A field experiment was conducted on three Late Navel citrus trees using a tractor-drawn canopy shaker at 180 and 230 cycles per minute (cpm) frequencies. The acceleration data from this experiment were used for simulation validation. In this study, the trees were modeled using SolidWorks and simulated using ANSYS. The input force was estimated using the acceleration of points on the tines of the canopy shaker. The mechanical properties of the citrus tree wood were determined under the assumption that it is isotropic in nature. The three citrus trees were modeled, and the acceleration data from the simulation were compared against the experimental data. Adjusted R2 values of 0.6 at the lower frequency (180 cpm) and 0.54 at the higher frequency (230 cpm) were observed between the two datasets. It was also observed that for both the experimental and the ANSYS simulation data, the equivalent stress and resultant acceleration were greater for the higher frequency than for the lower frequency.
机译:根据有关水果去除效率的实验研究,设计并优化了当前的冠层摇床收获机。为了进一步提高机盖振动台收割机的性能,需要更好地了解振动台与树木之间的相互作用。树干振动筛机械收割机可以进行整个树或果实茎子系统的仿真研究,但尚未报道使用冠层振动筛进行此类研究。这项研究的目的是开发和评估一个模拟框架,以使用有限元方法来预测树木和树冠振动器之间的相互作用。使用拖拉机绘制的天篷振动器,以180和230转/分钟(cpm)的频率对三棵晚脐橙柑桔树进行了田间试验。来自该实验的加速度数据用于仿真验证。在本研究中,使用SolidWorks对树木进行建模,并使用ANSYS对树木进行仿真。输入力是使用顶篷振动器上的点的加速度来估算的。柑橘树木材的力学性能是在自然各向同性的前提下确定的。对三棵柑桔树进行了建模,并将来自仿真的加速度数据与实验数据进行了比较。在两个数据集之间,观察到的调整后的R 2 值在较低频率(180 cpm)下为0.6,在较高频率(230 cpm)下为0.54。还观察到,对于实验数据和ANSYS仿真数据,等效应力和合成加速度在较高频率下均大于较低频率。

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