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Discrete element method applied to multiobjective optimization of discharge flow parameters in hoppers

机译:离散元方法应用于料斗卸料参数多目标优化

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Multiobjective approach for optimization of the discharge flow parameters of viscoelastic frictional granular material in a wedge-shaped hopper with fixed outlet orifice is considered. The discharge time and the discharge flow rate are taken as optimality criteria, while the discharge mass of material and the shape of the hopper are considered as design variables. The discrete concept and numerical discrete element method (DEM) are applied to the analysis of granular flow. The filling problem considered as numerical generation of the initial conditions for discharge flow was initially solved. The presented DEM model was validated by examining the wall pressures and comparing them with the results of classical macroscopic pressure prediction. Variation of optimality criteria and Pareto set is demonstrated by the numerical results. Sensitivity of optimality criteria to interparticle friction is also investigated.
机译:考虑采用多目标方法优化具有固定出口孔的楔形料斗中粘弹性摩擦粒状材料的流量参数。以出料时间和出料流量为最佳标准,以物料的出料质量和料斗的形状为设计变量。离散概念和数值离散元方法(DEM)被应用于颗粒流分析。最初解决了被认为是排放流量初始条件数值生成的填充问题。通过检查壁压力并将其与经典的宏观压力预测结果进行比较来验证所提出的DEM模型。数值结果证明了最优准则和帕累托集的变化。还研究了最佳标准对颗粒间摩擦的敏感性。

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