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首页> 外文期刊>Computer Methods in Applied Mechanics and Engineering >Multiscale finite element modeling of diffusion-reaction equation using bubble functions with bilinear and triangular elements
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Multiscale finite element modeling of diffusion-reaction equation using bubble functions with bilinear and triangular elements

机译:带有双线性和三角形单元的气泡函数的扩散反应方程的多尺度有限元建模

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摘要

A multiscale finite element method based on the bubble functions is used to generate stable and accurate solutions for the diffusion-reaction equation for both dissipation and production cases. This equation shows multiscale behaviour when the process becomes reaction dominated. To validate the approach, the numerical results obtained for a benchmark problem are compared with the analytical solution. Further numerical experiments are carried out to investigate the performance of the developed technique over a range Dam-kohler number. The numerical experiments are performed using bilinear and triangular elements.
机译:在耗散和生产情况下,基于气泡函数的多尺度有限元方法被用来为扩散反应方程生成稳定而精确的解。当过程成为反应主导时,该方程式显示多尺度行为。为了验证该方法,将针对基准问题获得的数值结果与解析解进行了比较。进行了进一步的数值实验,以研究所开发技术在一定的Dam-kohler数范围内的性能。数值实验是使用双线性和三角形元素进行的。

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