首页> 外文期刊>Journal of food engineering >Model for the deformation in agricultural and food particulate materials under bulk compressive loading using discrete element method. Ⅰ: Theory, model development and validation
【24h】

Model for the deformation in agricultural and food particulate materials under bulk compressive loading using discrete element method. Ⅰ: Theory, model development and validation

机译:离散压缩法在大体积压缩载荷下农业和食品颗粒材料的变形模型。 Ⅰ:理论,模型开发与验证

获取原文
获取原文并翻译 | 示例
           

摘要

When bulk viscoelastic particulate materials are constrained, individual particles will move and deform as an applied load is redistributed among the particles. Discrete element method is a numerical method for studying the dynamic behaviour of particles. This paper presents basic DE modelling theories and theoretical solutions for the computation of the deformation of viscoelastic particulates under load. The theories developed are incorporated into the basic theory of the discrete element method to produce a new model suitable for investigating the deformation and resulting shape change of particles during loading. Experiments were conducted and the results used to validate simulations using the new and a standard model on particles (rubber and rapeseed) modelled as spherical objects with equivalent properties under monotonic compressive load within a bulk system. The results obtained from the experiments and simulation were compared by superimposing the images of the longitudinal sections on each other and the correspondence observed. The correspondence between the experimental and simulation results were also quantified by comparison of the 2-D bed porosity estimated from the images using an algorithm developed based on computer image processing technique. There is a very good correlation between the experimental and the predicted deformation and bed porosity values obtained with the new model at all stages of compression in comparison to the increasing divergence between experimental values and those obtained from the standard model. The predicted stress-strain values from the simulation with the new model for the compression of the assemblies were also found close to the experimental values. This shows that the discrete element method is a promising approach in the study of the behaviour of deformable soft particulates.
机译:当块状粘弹性颗粒材料受到约束时,随着施加的载荷在颗粒之间重新分配,单个颗粒将移动并变形。离散元素法是研​​究粒子动力学行为的一种数值方法。本文介绍了计算载荷作用下粘弹性颗粒变形的基本DE建模理论和理论解。所开发的理论被纳入离散元素方法的基础理论中,以产生一个适用于研究加载过程中颗粒的变形和所导致的形状变化的新模型。进行了实验,并将结果用于验证新的和标准的颗粒(橡胶和油菜籽)模型的模拟,这些颗粒建模为在整体系统中单调压缩载荷下具有等效特性的球形物体。通过将纵向截面的图像相互叠加并观察到的对应关系,比较了从实验和模拟获得的结果。实验和仿真结果之间的对应关系也通过使用基于计算机图像处理技术开发的算法比较从图像估计的二维床孔隙度来量化。与实验值和从标准模型获得的值之间越来越大的差异相比,新模型在压缩的所有阶段所获得的实验值与预测变形和床层孔隙度值之间具有非常良好的相关性。通过新模型对组件进行压缩的模拟预测应力-应变值也接近实验值。这表明,离散元法是研究可变形软颗粒行为的有前途的方法。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号