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Boundary-conforming finite element methods for twin-screw extruders using spline-based parameterization techniques

机译:基于样条的参数化技术的双螺杆挤出机的边界边界有限元方法

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This paper presents a novel spline-based meshing technique that allows for usage of boundary-conforming meshes for unsteady flow and temperature simulations in co-rotating twin-screw extruders. Spline-based descriptions of arbitrary screw geometries are generated using Elliptic Grid Generation. They are evaluated in a number of discrete points to yield a coarse classical mesh. The use of a special control mapping allows to fine-tune properties of the coarse mesh like orthogonality at the boundaries. The coarse mesh is used as a 'scaffolding' to generate a boundary-conforming mesh out of a fine background mesh at run-time. Storing only a coarse mesh makes the method cheap in terms of memory storage. Additionally, the adaptation at run-time is extremely cheap compared to computing the flow solution. Furthermore, this method circumvents the need for expensive re-meshing and projections of solutions making it efficient and accurate. It is incorporated into a space-time finite element framework. We present time-dependent test cases of non-Newtonian fluids in 2D and 3D for complex screw designs. They demonstrate the potential of the method also for arbitrarily complex industrial applications. (C) 2019 Elsevier B.Y. All rights reserved.
机译:本文介绍了一种新颖的基于样条的网格划分技术,该技术允许使用边界兼容的网格进行同向旋转双螺杆挤出机中的非稳态流动和温度模拟。使用椭圆网格生成可生成基于样条的任意螺钉几何形状的描述。在多个离散点上对它们进行评估,以生成粗糙的经典网格。使用特殊的控制映射可以微调粗糙网格的属性,例如边界处的正交性。在运行时,粗网格被用作“支架”以从精细背景网格中生成符合边界的网格。仅存储一个粗糙的网格使该方法在内存存储方面便宜。此外,与计算流解决方案相比,运行时的适应性非常便宜。此外,该方法避免了对昂贵的重新网格划分和解决方案的需求,从而使其高效且准确。它被并入到时空有限元框架中。对于复杂的螺杆设计,我们在2D和3D中介绍了非牛顿流体随时间变化的测试案例。他们证明了该方法在任意复杂的工业应用中的潜力。 (C)2019 Elsevier B.Y.版权所有。

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