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首页> 外文期刊>Transactions of the ASABE >Optimization of a Citrus Canopy Shaker Harvesting System: Mechanistic Tree Damage and Fruit Detachment Models
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Optimization of a Citrus Canopy Shaker Harvesting System: Mechanistic Tree Damage and Fruit Detachment Models

机译:柑橘冠层振动器收获系统的优化:机械树损伤和水果脱离模型

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Mechanization offruit and nut harvesting is becoming increasingly important because of a significant rise in the cost of manual harvesting. This work proposes a progressive analytical approach for the design and optimization of a citrus canopy shakerharvesting machine. The approach was formulated using finite element (FE) methods to find the optimum design parameters of the machine. The design parameters were defined in terms of a configuration (or stiffness) of shaking rods and two operating parameters: shaking frequency and shaking amplitude. The formulated methodology consists of determining the properties of wood, statistical modeling of the tree limbs, developing mechanistic models, and performing optimization using FE simulations. The proposed methodology employs the response surface methodology or surrogate models to quantify the objective functions, and Pareto-optimal search techniques to find the optimum designs. Three sets of machine parameters were proposed in this study to minimize tree damage and maximize fruit removal. These optimal parameters were proposed based on the configuration and distribution of limbs andfruits in a medium-size citrus tree. The optimized tine configuration of the middle and bottom section of the canopy shaker consists of a solid rod made ofpolyamide reinforced with 50% long glass fibers and a hollow tube made of hardened steel in a 3:1 ratio by length. These tines, when vibrating at a high frequency of 7.8 Hz and low amplitude of 3.81 to 5.08 cm (1.5 to 2 in.) and a low frequency of 3 to 3.5 Hz and high amplitude of 13.9 to 15.2 cm (5.5 to 6 in.), provide a 25% to 30% reduction in damage to the tree limbs in the bottom and middle zones of the tree. Similarly, changes to the top sections of the canopy shaker with another set of optimized tine configurations resulted in a 40%o to 45%> reduction in the damage to the limbs of the top section of the tree canopy. The optimized tine configuration, thus proposed for the top section of the canopy shaker, is made of a solid rod ofpolyamide reinforced with 60% long glass fibers and vibrates at a frequency of 6.5 to 7.5 Hz with an amplitude of 7.6 to 8.9 cm (3 to 3.5 in.).
机译:机械化陆续和螺母收获的越来越重要,因为手工收获成本显着上升。这项工作提出了一种渐进式分析方法,用于柑橘冠层洗牌机的设计和优化。使用有限元(Fe)方法配制该方法,以找到机器的最佳设计参数。根据振荡杆的配置(或刚度)和两个操作参数的结构(或刚度)定义设计参数:摇动频率和摇动振幅。配制方法包括确定树木,树枝统计学建模,开发机械模型以及使用FE模拟进行优化的性质。该提出的方法采用响应面方法或代理模型来量化客观函数,以及帕累托 - 最佳搜索技术以找到最佳设计。本研究提出了三组机器参数,以最大限度地减少树木损伤并最大化果实去除。提出了这些最佳参数,基于中尺寸柑橘树中肢和果实的配置和分布。顶部和底部的优化齿部和底部部分由固体棒组成,由50%长的玻璃纤维加固,由50%长的玻璃纤维和由硬化钢制成的空心管,长度为3:1的比例。当以7.8Hz的高频率振动和3.81至5.08厘米(1.5至2英寸)的低频率和3至3.5Hz的低频率,并且高振幅为13.9至15.2厘米(5.5至6英寸)时,这些齿),在树的底部和中部区域的树枝上提供25%至30%的损坏。类似地,与另一组优化的尖柱配置的顶篷振动器的顶部变为40%O至45%>树冠顶部顶部的四肢损坏的40%o至45%。因此提出了针对顶部振动筛的顶部的优化的柱形构造,由60%长的玻璃纤维增​​强的聚酰胺固体棒制成,并以6.5至7.5Hz的频率振动,幅度为7.6至8.9厘米(3 3.5英寸。)。

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