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Predicted patterns of filling pressures in thin-walled square silos

机译:薄壁方形筒仓中填充压力的预测模式

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In this paper, a validated finite element model for silo filling pressures in square vertical walled metal silos is used to generate new information in pursuit of the development of design rules. The computational model predicts the state of stress in the stored solid and the pressures imposed on the silo walls. The non-uniform horizontal pressure distribution at any given depth at the end of filling in a silo with flexible walls is predicted well. Results from the model show that the hyperbolic function proposed for this horizontal pressure distribution, previously developed from test results, gives a close representation of the new predictions. The coefficients of this function are found to vary with depth, and to depend on the relative stiffness of the stored solid and the silo wall. The results thus demonstrate the role of the stiffness of a stored solid in determining wail pressures in flexible-walled rectangular silos. The paper identifies the key parameters that control the extent of non-uniformity in the horizontal distribution of wall pressures and shows the relationships for stored sand, gravel and wheat.
机译:本文采用一种经过验证的方形竖壁金属筒仓中筒仓填充压力的有限元模型来生成新信息,以追求设计规则的发展。该计算模型预测存储的固体中的应力状态以及施加在料仓壁上的压力。可以很好地预测到在填充具有柔性壁的筒仓时,在任何给定深度处的不均匀水平压力分布。该模型的结果表明,先前根据测试结果开发的针对该水平压力分布提出的双曲函数可以很好地表示新的预测。发现该函数的系数随深度而变化,并取决于所存储的固体和筒仓壁的相对刚度。因此,结果证明了存储的固体的刚度在确定柔性壁矩形筒仓中的壁ail压力中的作用。本文确定了控制壁压力水平分布不均匀程度的关键参数,并显示了储存的沙子,砾石和小麦之间的关系。

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