消散
非线性系统
点蚀
计算机科学
能量(信号处理)
方案(数学)
领域(数学)
相(物质)
变量(数学)
自适应网格优化
接口(物质)
机械
流量(数学)
高效能源利用
应用数学
材料科学
数学优化
计算机模拟
数值分析
能量泛函
计算科学
控制理论(社会学)
算法
作者
Futuan Li,Hongwei Li,Tao Tang,Jiang Yang
标识
DOI:10.4208/aamm.oa-2025-0232
摘要
Pitting corrosion, recognized as one of the most catastrophic forms of localized corrosion, frequently leads to premature structural failures. A major computational challenge is the development of accurate and efficient numerical methods that can capture both the initiation and the nonlinear evolution of corrosion pits. In this work, we propose a third-order, decoupled, unconditionally energy-stable implicit-explicit (IMEX) Runge-Kutta scheme for a phase-field model of pitting corrosion, which is formulated as a gradient flow of a coupled free energy functional involving a phase field variable and a normalized ion concentration. The proposed scheme is rigorously proven to satisfy a discrete energy dissipation law, regardless of time step size. To further enhance computational performance, we integrate an adaptive mesh refinement and dynamic time-stepping strategy, enabling efficient resolution of interface dynamics. Comprehensive numerical experiments validate the high accuracy, unconditional energy stability, and effectiveness of adaptive implementation in simulating the complex spatio-temporal evolution of pitting corrosion.
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