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On Efficient Multigrid Methods for Materials Processing Flows with Small Particles

机译:小颗粒物料流的高效多网格方法

摘要

Multiscale modeling of materials requires simulations of multiple levels of structural hierarchy. The computational efficiency of numerical methods becomes a critical factor for simulating large physical systems with highly desperate length scales. Multigrid methods are known for their superior efficiency in representing/resolving different levels of physical details. The efficiency is achieved by employing interactively different discretizations on different scales (grids). To assist optimization of manufacturing conditions for materials processing with numerous particles (e.g., dispersion of particles, controlling flow viscosity and clusters), a new multigrid algorithm has been developed for a case of multiscale modeling of flows with small particles that have various length scales. The optimal efficiency of the algorithm is crucial for accurate predictions of the effect of processing conditions (e.g., pressure and velocity gradients) on the local flow fields that control the formation of various microstructures or clusters.
机译:材料的多尺度建模需要模拟多个层次的结构层次。数值方法的计算效率已成为模拟具有高度绝望长度比例的大型物理系统的关键因素。多网格方法以其在表示/解析不同级别的物理细节方面的卓越效率而闻名。通过在不同规模(网格)上交互使用不同的离散化来实现效率。为了帮助优化具有大量颗粒的材料处理的制造条件(例如,颗粒的分散,控制流粘度和团簇),针对具有不同长度尺度的小颗粒的流的多尺度建模情况,开发了一种新的多网格算法。该算法的最佳效率对于准确预测工艺条件(例如压力和速度梯度)对控制各种微结构或簇的形成的局部流场的影响至关重要。

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