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Non-Isothermal Modeling of a Non-Newtonian Fluid Flow in a Twin Screw Extruder Using the Fictitious Domain Method

机译:虚拟域方法在双螺杆挤出机中非牛顿流体流动的非等温建模

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摘要

In this study, using a developed mathematical model, the non-isothermal behavior of a non-Newtonian fluid flow in the conveying elements of an intermeshing co-rotating twin screw extruder (TSE) is simulated based on the combination of mixed finite elements and fictitious domain methods. The flow equations are solved employing the standard Galerkin method and a streamline-upwind/Petrov–Galerkin technique is used in the solution scheme of the energy equation to reduce numerical oscillation. This model is combined with the Carreau rheological model to solve governing equations of continuity, momentum, and energy in a 3D Cartesian coordinate system. Using a developed mathematical model, the velocity and pressure fields are simulated for a non-isothermal flow in a corotating TSE. The shear rate distribution as a criterion for viscous dissipation and also the temperature distribution is calculated based on the simulated flow fields. The applicability of this model is verified by the comparison of experimentally measured pressures and mass flow rates with the simulation results for a highdensity polyethylene melt. This comparison shows a good correlation between experimental data and model predictions.
机译:在这项研究中,使用发展的数学模型,在混合有限元和虚拟结合的基础上,模拟了相互啮合的同向旋转双螺杆挤出机(TSE)输送元件中非牛顿流体流动的非等温行为。域方法。使用标准的Galerkin方法求解流动方程,并在能量方程的求解方案中使用流线上风/ Petrov-Galerkin技术来减少数值振荡。该模型与Carreau流变模型相结合,可以求解3D笛卡尔坐标系中的连续性,动量和能量的控制方程。使用已开发的数学模型,模拟了同向旋转TSE中非等温流动的速度和压力场。剪切速率分布是粘性耗散的标准,温度分布也是基于模拟流场计算的。通过将实验测得的压力和质量流量与高密度聚乙烯熔体的模拟结果进行比较,验证了该模型的适用性。这种比较表明实验数据与模型预测之间具有良好的相关性。

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