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A MICROSCOPIC THEORY FOR PREDICTING LOADS IN STORAGE BINS FOR GRANULAR MATERIALS

机译:预测粒料储料桶中负载的微观理论

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A two-dimensional model for predicting loads in granular material storage bins was developed from the micromechanics approach, in which force equilibrium is considered at the particle (microscopic) level. The significance of this approach is to allow some particle property parameters to be used in calculations of stresses in storage bins for granular materials. Three key assumptions are made in the model: (1) the granular medium has a hexagonal structure consisting of elastic spheres, (2) rotation and slip of particles are negligible, and (3) stresses are uniform across the bin cross-section. Predictions by the proposed model are in close agreement with the experimental data reported by three different groups of researchers for maize and wheat storage bins. Janssen's equation, recommended by most design standards and codes, has been shown to be a special case of the present theory. The traditional assumption of constant lateral to vertical stress ratio was found to be valid only for frictionless walls or rigid particles.
机译:从微力学方法开发了一种用于预测颗粒状物料存储箱中负荷的二维模型,其中在颗粒(微观)水平上考虑了力平衡。此方法的意义在于允许将某些粒子属性参数用于计算颗粒物料存储仓中的应力。在模型中做出了三个关键假设:(1)颗粒介质具有由弹性球体组成的六边形结构;(2)颗粒的旋转和滑动可忽略不计;(3)整个仓截面的应力均一。所提出的模型的预测与三组不同的研究人员针对玉米和小麦储藏箱报告的实验数据非常吻合。大多数设计标准和规范都推荐使用Janssen方程,这是本理论的特例。发现恒定的横向应力与垂直应力之比的传统假设仅对无摩擦壁或刚性颗粒有效。

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