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A non-iterative local remeshing approach for simulating moving boundary transient diffusion problems

机译:模拟运动边界瞬态扩散问题的非迭代局部重网格方法

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A computational framework relying on a non-iterative mesh generation algorithm is introduced for modeling moving boundary transient diffusion problems, with a special focus on its application for simulating corrosion phenomena. In this approach, the Conforming to Interface Structured Adaptive Mesh Refinement (CISAMR) technique is employed to adapt the finite element mesh to the evolving morphology of the problem. CISAMR combines customized h-adaptivity, r-adaptivity, and sub-triangulation algorithms to transform a simple structured mesh into a high quality hybrid conforming mesh composed of rectangular and triangular elements. A key advantage of this method for modeling moving boundary problems is that only the elements located along the moving boundary must be modified to regenerate a conforming mesh at each step. This feature not only facilitates the remeshing process but also reduces the error associated with projecting nodal values of the solution to the new mesh. After a convergence study, we verify the accuracy of CISAMR for modeling pitting corrosion problems by comparing results with analytical solutions and phase field simulations. Additional examples are also provided to show the application of CISAMR for simulating corrosion problems with intricate morphologies.
机译:引入了一种基于非迭代网格生成算法的计算框架来对运动边界瞬态扩散问题进行建模,并特别关注其在模拟腐蚀现象中的应用。在这种方法中,采用了符合接口结构的自适应网格细化(CISAMR)技术,以使有限元网格适应问题的不断发展的形态。 CISAMR结合了定制的h适应性,r适应性和子三角剖分算法,可以将简单的结构化网格转换为由矩形和三角形元素组成的高质量混合依形网格。此方法用于对运动边界问题进行建模的一个关键优势在于,只有沿运动边界定位的元素必须在每个步骤中进行修改,以重新生成符合要求的网格。此功能不仅简化了重新网格化过程,而且还减少了与将求解的节点值投影到新网格有关的误差。经过收敛研究,我们通过将结果与解析解和相场模拟进行比较,验证了CISAMR建模点蚀问题的准确性。还提供了其他示例,以展示CISAMR在模拟复杂形态腐蚀问题中的应用。

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