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首页> 外文期刊>Postharvest Biology and Technology >The discrete element method (DEM) to simulate fruit impact damage during transport and handling: model building and validation of DEM to predict bruise damage of apples.
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The discrete element method (DEM) to simulate fruit impact damage during transport and handling: model building and validation of DEM to predict bruise damage of apples.

机译:离散元素法(DEM)用于模拟运输和处理过程中水果撞击的损害:建立模型和验证DEM以预测苹果的跌打损伤。

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摘要

The validity of the discrete element method (DEM) as a tool to predict impact damage of fruit was investigated for 'Jonagold' apples. 'Bruise damage' was preferred over the 'particle trajectory' as the validation parameter. The bruise damage of apples in boxes shaken with a well defined acceleration signal on an electro-hydraulic shaker was compared with the bruise damage calculated from DEM simulations with the same initial conditions. The parameters for the contact force models, needed as input for the simulations, and the bruise prediction model were determined on the same batch of apples, utilized in the validation experiments. The validations indicated that DEM can predict in an acceptable way apple bruise damage (bruise depth). However, due to the lack of the possibility of saving the impact positions on the apple surface by means of a coordinate system no prediction of multi-impact bruise surface and volume could be obtained..
机译:对于“乔纳金”苹果,研究了离散元方法(DEM)作为预测水果撞击损伤的工具的有效性。与“粒子轨迹”相比,“挫伤”是更可取的参数。将在电动液压振动器上以明确定义的加速度信号振动的盒子中的苹果的损伤与在相同初始条件下通过DEM模拟计算出的损伤进行了比较。在验证实验中使用的同一批苹果上确定了用于仿真的输入所需的接触力模型的参数和跌落预测模型。验证表明DEM可以以可接受的方式预测苹果的瘀伤(瘀伤深度)。但是,由于缺乏通过坐标系保存在苹果表面上的撞击位置的可能性,因此无法获得对多撞击青肿表面和体积的预测。

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