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An efficient operator-splitting FEM-FCT algorithm for 3D chemotaxis models

机译:一种高效的3D趋化型拼接零件算法

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An efficient operator-splitting finite element method (FEM) combined with the flux-corrected transport (FCT) algorithm is presented to reduce the computation and storage of solving three-dimensional (3D) chemotaxis models. Firstly, the 3D coupled and positivity-preserving problem is split into a series of ID subproblems in three spatial directions. Then each ID subproblem is solved by the FEM-FCT algorithm which guarantees the positivity of numerical solutions. As the ID subproblems in one direction are spatially independent, they can be calculated in parallel. Additionally, the accuracy and efficiency of the proposed method are investigated by numerical tests. Furthermore, we employ the proposed method to simulate 3D chemotaxis phenomena, including the typical blow-up effect, the more complex pattern formation and aggregating behavior of cell distribution.
机译:提出了一种与磁通校正传输(FCT)算法相结合的有效操作员分离有限元方法(FEM),以减少求解三维(3D)趋化模型的计算和存储。首先,将3D耦合和阳性保存问题分成三个空间方向的一系列ID子问题。然后通过FEM-FCT算法解决了每个ID子问题,保证了数字解决方案的积极性。当一个方向上的ID子问题是空间上独立的,它们可以并行计算。另外,通过数值测试研究了所提出的方法的准确性和效率。此外,我们采用该方法模拟3D趋化性现象,包括典型的爆破效果,更复杂的图案形成和细胞分布的聚集行为。

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