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Solving Fully Three-Dimensional Microscale Dual Phase Lag Problem Using Mixed-Collocation, Finite Difference Discretization

机译:使用混合定位,有限差分离散化解决完全三维微尺度双相滞后问题

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摘要

In the present work, we investigate laser heating of nanoscale thin-films irradiated in three dimensions using the dual phase lag (DPL) model. A numerical solution based on mixed-collocation, finite difference method has been employed to solve the DPL heat conduction equation. Direct substitution in the model transforms the differential equation into a linear system of equations in which related system is solved directly without preconditioning. Consistency, stability, and convergence of the proposed method based on a mixed-collocation, finite difference approximation are proved, and numerical results are presented. The general form of matrices and their corresponding eigenvalues are presented.
机译:在目前的工作中,我们使用双相滞后(DPL)模型研究了三维加热的纳米级薄膜的激光加热。采用基于混合配置有限差分法的数值解来求解DPL导热方程。模型中的直接替换将微分方程转换为线性方程组,在其中无需预处理即可直接求解相关系统。证明了所提出的基于混合搭配,有限差分近似的方法的一致性,稳定性和收敛性,并给出了数值结果。介绍了矩阵的一般形式及其对应的特征值。

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