Optimized arrangement of device for electrostatic separation of plastic particles

F. Mach, P. Kus, P. Karban, I. Doležel
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引用次数: 1

Abstract

Shape optimization of a device for electrostatic separation of triboelectrically charged plastic particles is carried out. The objective function maximizes the efficiency of separation consisting in the highest possible number of particles falling down to the prescribed bins. Electric field in the system is solved numerically, using the fully adaptive higher-order finite element method. The movement of particles in the device influenced by the Coulomb force is determined by means of an adaptive Runge-Kutta-Fehlberg method with a time varying time step. The shape optimization is carried out using a technique based on higher-order conjugate gradients. The methodology is illustrated by an example whose results are discussed.
塑料微粒静电分离装置的优化布置
对一种摩擦带电塑料微粒静电分离装置进行了形状优化。目标函数最大限度地提高分离效率,包括尽可能多的颗粒落在规定的箱中。采用全自适应高阶有限元法对系统电场进行了数值求解。采用具有时变时间步长的自适应龙格-库塔-费贝格方法,计算了受库仑力影响的器件中粒子的运动。采用基于高阶共轭梯度的形状优化技术。通过一个实例说明了该方法,并对结果进行了讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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