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OPTIMIZATION OF A CITRUS CANOPY SHAKER HARVESTING SYSTEM: PROPERTIES AND MODELING OF TREE LIMBS

机译:优化柑橘冠层振动器收获系统:树枝的性质和建模

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This article presents a part of the research work for the design and optimization of a fruit tree harvesting system using numerical methods. The analytical framework for the optimization is formulated based on a continuous canopy shaker that harvests citrus crops, primarily Valencia oranges ( Citrus sinensis). Tree limbs are modeled analytically in the numerical based design optimization of a shaker that requires information regarding the limb configuration and properties. The objective of this study is to formulate a mathematical model to predict the configuration of primary limbs and to determine the properties of citrus wood. The tree limbs, thus proposed, are statistical prototypes or representations that account for the 5th, 25th, 50th, 75th, and 95th percentiles of actual tree limbs from random individual citrus trees. Polynomial response surface models were developed to predict sectional properties of the statistical model of the tree limbs. The distributions of the secondary branches and fruits were also predicted to model their effect on the dynamic response of the tree limbs. A three-point bending test, specific gravity test, moisture content test, and damping test were conducted on freshly cut samples of citrus wood. An elastic modulus of 8.5 GPa and modulus of rupture of 67.3 MPa were calculated from a load-deflection curve, and a density of 1450.8 kg m-(3), moisture content of 42%, and damping ratio of 10.78 were measured. Although the proposed methodology was developed for a canopy shaker, it could be easily implemented for other vibratory harvesters, such as limb shakers, foliage shakers, and over-the-row harvesters.
机译:本文介绍了使用数值方法的设计和优化果树收集系统的研究工作的一部分。优化的分析框架是基于收获柑橘作物的连续遮篷振动器,主要是瓦伦西亚橙子(柑橘Sinensis)。树肢通过分析在基于振动器的数值设计优化中进行了建模,需要关于肢体配置和属性的信息。本研究的目的是制备数学模型以预测初级肢体的构型并确定柑橘木材的性质。因此提出的树肢是从随机单个柑橘树的第5,第25,第50,75和第5百分点的统计原型或陈述,其实际树肢的第5次。开发多项式响应表面模型以预测树肢统计模型的截面特性。还预计次要分支和果实的分布可以模拟它们对树枝的动态响应的影响。在柑橘木材的新鲜切割样品上进行了三点弯曲试验,比重试验,水分含量试验和阻尼试验。从载荷 - 偏转曲线计算8.5GPa的弹性模量和67.3MPa的破裂模量,并且测量了1450.8kg m-(3),42%的水分含量和10.78的阻尼比率。虽然所提出的方法是为树冠振荡器开发的,但它可以很容易地为其他振动收割机实施,例如肢体振动器,树叶摇动师和连续的收割机。

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