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Simulation of distributive mixing inside mixing elements of co-rotating twin-screw extruders

机译:同向双螺杆挤出机混合元件内部混合分布的模拟

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摘要

The mapping method is a powerful simulation tool to optimize distributive mixing inside periodic mixers. Recently, a new approach of the mapping method was introduced to simulate distributive mixing inside dynamic, complex geometries in an open flow system (twin-screw extruders). Here we apply this approach of the mapping method to different mixing elements, both kneading and screw mixing element (SME), inside a twin-screw extruder. The accuracy of the mapping method depends on the accuracy of the velocity field and these accurate 3D velocity fields are here calculated using an extended finite element method. For the kneading elements a variety of staggering angles have been investigated, and the mixing performance of the SME element is compared with a standard conveying element. To better quantify the mixing performance, additional parameters like particle trajectories, residence time distribution and the volume-integrated, intensity of segregation are used as a mixing measure.
机译:映射方法是一种功能强大的仿真工具,可以优化周期混合器中的分布式混合。最近,引入了一种新的映射方法,以模拟开放流系统(双螺杆挤出机)中动态,复杂几何形状内部的分布混合。在这里,我们将映射方法的这种方法应用于双螺杆挤出机内部的不同混合元素,包括捏合和螺杆混合元素(SME)。映射方法的精度取决于速度场的精度,这些精确的3D速度场在此使用扩展的有限元方法进行计算。对于捏合元件,已经研究了多种交错角度,并将SME元件的混合性能与标准输送元件进行了比较。为了更好地量化混合性能,将诸如颗粒轨迹,停留时间分布和体积积分,偏析强度等其他参数用作混合度量。

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