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A Novel Modeling Approach for Plastics Melting within a CFD-DEM Framework

机译:CFD-DEM框架内塑料熔化的一种新型模型方法

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摘要

Existing three-dimensional modeling approaches to single-screw extrusion can be classified according to the process sections. The discrete element method (DEM) allows describing solids transport in the feed section. The melt flow in the melt section can be calculated by means of computational fluid dynamics (CFD). However, the current state of the art only allows a separate consideration of the respective sections. A joint examination of the process sections still remains challenging. In this study, a novel modeling approach is presented, allowing a joint consideration of solids and melt transport and, beyond that, the formation of melt. For this purpose, the phase transition from the solid to liquid states is modeled for the first time within the framework CFDEMCoupling®, combining CFD and DEM by a novel melting model implemented in this study. In addition, a melting apparatus for the validation of the novel melting model is set up and put into operation. CFD-DEM simulations are carried out in order to calculate the melting rate and are compared to experimental results. A good agreement between the simulation and experimental results is found. From the findings, it can be assumed that the CFD-DEM simulation of single-screw extruder with a joint consideration of the feed and melt section is feasible.
机译:现有的三维建模方法可以根据过程部分对单螺杆挤出进行分类。离散元件方法(DEM)允许描述进料部分中的固体传输。熔体部分中的熔体流可以通过计算流体动力学(CFD)来计算。然而,本领域的当前状态仅允许单独考虑相应的部分。对过程部分的联合审查仍然挑战。在该研究中,提出了一种新型的建模方法,允许共同考虑固体和熔化的运输,并且超出该熔体。为此目的,从固体到液态的相位转变是在框架CFdemcoupling的第一次建模的,通过本研究中实施的新熔化模型组合CFD和DEM。另外,用于验证新型熔化模型的熔化装置并投入运行。进行CFD-DEM仿真以计算熔化率并与实验结果进行比较。发现模拟与实验结果之间的良好一致性。从调查结果中,可以假设单螺杆挤出机的CFD-DEM模拟具有联合考虑进料和熔体部分的可行性。

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