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A Numerical Method for Time-Fractional Reaction-Diffusion and Integro Reaction-Diffusion Equation Based on Quasi-Wavelet

机译:基于准小波的时分反应扩散和积分反应扩散方程的数值方法

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摘要

In this research work, we focused on finding the numerical solution of time-fractional reaction-diffusion and another class of integro-differential equation known as the integro reaction-diffusion equation. For this, we developed a numerical scheme with the help of quasi-wavelets. The fractional term in the time direction is approximated by using the Crank–Nicolson scheme. The spatial term and the integral term present in integro reaction-diffusion are discretized and approximated with the help of quasi-wavelets. We study this model with Dirichlet boundary conditions. The discretization of these initial and boundary conditions is done with a different approach by the quasi-wavelet-based numerical method. The validity of this proposed method is tested by taking some numerical examples having an exact analytical solution. The accuracy of this method can be seen by error tables which we have drawn between the exact solution and the approximate solution. The effectiveness and validity can be seen by the graphs of the exact and numerical solutions. We conclude that this method has the desired accuracy and has a distinctive local property.
机译:在这项研究中,我们专注于找到时间分数反作用 - 扩散的数值解和另一种被称为积分反应扩散方程的积分微分方程。为此,我们在准小波的帮助下开发了一个数字方案。通过使用曲柄 - 尼科尔森方案来近似时方向上的分数术语。偶联反应扩散中存在的空间术语和整体术语是在准小波的帮助下离散化并近似。我们使用Dirichlet边界条件研究该模型。这些初始和边界条件的离散化是通过基于准小波的数值方法的不同方法完成的。通过考虑具有精确分析溶液的一些数值示例来测试该提出的方法的有效性。通过错误表可以看到这种方法的准确性,我们在精确的解决方案和近似解之间绘制。精确和数值解决方案的图表可以看到有效性和有效性。我们得出结论,该方法具有所需的准确性并具有独特的当地特性。

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