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The discrete element method (DEM) to simulate fruit impact damage during transport and handling: case study of vibration damage during apple bulk transport.

机译:离散元素法(DEM)模拟运输和搬运过程中的水果撞击损伤:苹果散装运输过程中振动损伤的案例研究。

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摘要

Making use of the discrete element method (DEM) a study is presented on the influence of mechanical parameters (vibration frequency and acceleration amplitude, apple size, stack height) and fruit properties (apple harvest date, apple temperature, apple acoustic stiffness) on vibration damage of apples. As acceleration input a sine in the vertical direction was used. Realistic parameters of the Kuwabara and Kono [Kuwabara, G., Kono, K., 1987. Restitution coefficient in a collision between two spheres. Jpn. J. Appl. Phys. 26, 1230-1233] contact force model for 'Jonagold' apples and bruise prediction models were applied. As a general conclusion, major influences of mechanical parameters on the vibration damage were identified, in particular stack height and fruit size, and minor influences of fruit properties. Also a detailed study was performed to investigate the relation between apple positions in the stacking and bruise damage. It was demonstrated that the position-bruise damage relation depends on the acceleration amplitude, vibration frequency and stack height. The existence of damage chains within the centre of the apple stack was also identified, that is in accordance with the well-known force chains in bulk materials..
机译:利用离散元方法(DEM),对机械参数(振动频率和加速度幅度,苹果大小,烟囱高度)和水果特性(苹果收获日期,苹果温度,苹果声刚度)的影响进行了研究。苹果的损害。作为加速度输入,使用垂直方向上的正弦。 Kuwabara和Kono的实际参数[Kuwabara,G.,Kono,K.,1987。两个球体之间碰撞时的恢复系数。日本。 J.应用物理[26,1230-1233]应用了“乔纳金”苹果的接触力模型和跌打预测模型。总的结论是,确定了机械参数对振动损伤的主要影响,特别是烟囱高度和果实大小,以及对果实特性的较小影响。还进行了详细的研究,以研究苹果堆垛位置与瘀伤之间的关系。结果表明,位置-损伤-损伤关系取决于加速度幅度,振动频率和堆垛高度。还确定了苹果堆中央存在损坏链,这与散装材料中众所周知的力链是一致的。

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