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A finite difference scheme for two-dimensional semiconductor device of heat conduction on composite triangular grids

机译:复合三角网格上二维导热半导体器件的有限差分方案

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摘要

The momentary state of a semiconductor device of heat conduction is described by a system of four nonlinear partial differential equations. One elliptic equation is for the electrostatic, two parabolic equations are for the electron concentration and the hole concentration, and one heat exchange equation is for the temperature. According to the necessary of practical numerical simulations and based on the balance equation, finite difference schemes for two-dimensional transient behavior of a semiconductor device of heat conduction on composite triangular grids are constructed. Studying their stability and convergence properties, the error estimate in the energy norm is obtained. Finally, a numerical example is given.
机译:用四个非线性偏微分方程组描述热传导半导体器件的瞬时状态。一个椭圆方程表示静电,两个抛物方程表示电子浓度和空穴浓度,一个热交换方程表示温度。根据实际数值模拟的必要性,并基于平衡方程,构建了复合三角形网格上导热半导体器件的二维瞬态行为的有限差分方案。研究它们的稳定性和收敛性,获得能量范数中的误差估计。最后,给出一个数值例子。

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