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C~1 continuous h-adaptive least-squares spectral element method for phase-field models

机译:相场模型的C〜1连续h自适应最小二乘频谱元素方法

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To describe the interfacial dynamics between two phases using the phase-field method, the interfacial region needs to be close enough to a sharp interface so as to reproduce the correct physics. Due to the high gradients of the solution within the interfacial region and consequent high computational cost, the use of the phase-field method has been limited to the small-scale problems whose characteristic length is similar to the interfacial thickness. By using finer mesh at the interface and coarser mesh in the rest of computational domain, the phase-field methods can handle larger scale of problems with realistic interface thicknesses. In this work, a C-1 continuous h-adaptive mesh refinement technique with the least-squares spectral element method is presented. It is applied to the Navier-Stokes-Cahn-Hilliard (NSCH) system and the isothermal Navier-Stokes-Korteweg (NSK) system. Hermite polynomials are used to give global differentiability in the approximated solution, and a space-time coupled formulation and the element-by-element technique are implemented. Two refinement strategies based on the solution gradient and the local error estimators are suggested, and they are compared in two numerical examples. (C) 2017 Elsevier Ltd. All rights reserved.
机译:为了使用相场方法描述两个相之间的界面动力学,界面区域必须足够接近尖锐的界面,以重现正确的物理学。由于界面区域内溶液的高梯度以及随之而来的高计算成本,相场方法的使用仅限于特征长度与界面厚度相似的小规模问题。通过在界面处使用较细的网格并在其余计算域中使用较粗的网格,相场方法可以使用实际的界面厚度来处理更大范围的问题。在这项工作中,提出了一种使用最小二乘谱元素法的C-1连续h自适应网格细化技术。它适用于Navier-Stokes-Cahn-Hilliard(NSCH)系统和等温Navier-Stokes-Korteweg(NSK)系统。使用Hermite多项式在近似解中给出整体可微性,并实现了时空耦合公式和逐元素技术。提出了两种基于解梯度和局部误差估计的细化策略,并在两个数值示例中进行了比较。 (C)2017 Elsevier Ltd.保留所有权利。

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